Showing posts with label Planning. Show all posts
Showing posts with label Planning. Show all posts

Saturday, January 17, 2015

Zoning as a Tool for Plan Implementation

Zoning is an exercise of the police power: the inherent power of a sovereign government to legislate for the health, welfare, and safety of the community (Cullingworth)

Zoning is the division of a community into zones or districts (e.g. commercial, residential, industrial, etc.) according to present and potential uses of land to maximize, regulate and direct their use and development in accordance with the Comprehensive Land Use Plan of the community (HLURB). These definitions point to zoning as a regulatory tool to control the use of the land for the interest of the public.

Components of Zoning

Zoning Map which shows graphically the designation, location and boundaries of the different “zones” or districts into which the community is divided.

Zoning Ordinance or text that specifies in detail what may be constructed in each zone and to what uses structures may be put. It also contain provisions on what steps to do to obtain zoning permits or clearance to use and develop their land and what remedies are available to them should they find some regulations contained therein as too restrictive or difficult to comply with.

Who enacts zoning regulations?
Zoning is enacted in the same manner as other local ordinances which are promulgated by the local legislative body (Sangguniang Panglunsod or Sangguniang Pambayan) and signed into law by the Mayor of the city or municipality.

What is the source of power of the local legislative bodies to enact zoning?
The power to zone is derived from the police power of the State which vests on the legislative body the power to make and establish reasonable laws, statutes or ordinances which shall promote the general welfare of its inhabitants.

What does zoning regulate?
Use – residential, commercial, etc.
Off-street parking – to ensure that new or proposed developments make provisions for some of their own parking needs to prevent congestion and heavy traffic.
Building bulk – requiring setback provisions on the front and side, rear yards; limiting building heights and limiting the proportion or amount of an area that may be covered by buildings
Population density – specifying minimum required size for each lot, limiting the number of families per hectare or setting a minimum required lot area for each family.
Others – landscaping signs, appearance of building, loading and unloading, and view protection

Types of Zoning

Traditional (Euclidian) Zoning – originally vested on the motion of hierarchy or pyramid of land uses, with “lower” uses assured to have harmful effects on “higher” uses. Zoning was justified on the economic premise that the unregulated use of land produces harmful consequences when incompatible uses are located near one another. Rigid and restrictive. Segregation of noxious activities out of residential areas and into their own districts.

“The New York City Comprehensive Zoning Ordinance in 1916” – first comprehensive zoning ordinance; model ordinance

Non-Cumulative Zoning – each successive district admits the uses of all the more restricted districts. One district exclusively for residential, second district (commercial) admits also residential uses. The industrial district, being the lowest class district, is open to all uses. Commercial and industrial districts enjoy the same exclusiveness accorded only to residences.

Special Use Zoning – this technique retain the usual residential, commercial and industrial zones, specifying the uses permitted in each zone. For each zone, however, special areas are also established which are permitted within the zone only if approved by the zoning board on the governing legislative body.

Spot Zoning – process of singling out a small parcel of land for a use classification totally different from that of the surrounding area, for the benefit of the owner of such property and to the detriment of the owners of the others. Spot zoning is the very antithesis of planned planning. A kind of ad-hoc zoning that allows a small piece of land to deviate from the approved zone of the area.

Bonus or Incentive Zoning – will allow increase residential densities if developers will include some units earmarked for low and moderate-income tenants. A particular zone can be permitted to increase from 8 to 10 units if 15% of the units are reserved for low and moderate-income tenants. It will also permit additional height for office development if developer will provide certain amenities at ground level – for example, a plaza in front of the entrance of the building, a direct entrance to a subway station, or “vest pocket” park or sitting area.

Transfer of Development Rights – intent is to concentrate development areas where it is wanted and to restrict it in areas where it is not. A sending area and a receiving area are designated. Priority owners in the sending and receiving areas who do not develop their properties to the full extent permitted by law may sell their unused rights to property areas in receiving areas. This technique is used to preserve open space, limit development in an ecologically fragile area, or to achieve historic preservation goals among others.

Inclusionary Zoning – developers who builds more than a specified number of units must include a certain percentage for low and moderate income households or some other designated group of households. It differs from the incentive or bonus approach in that the inclusion of low and moderate-income units is not discretionary.
It is the same, however, in that it shifts some of the costs of housing such households to developer. He or she in turn, is likely to shift at least some of that cost to the other buyers or renter.

Planned Unit Development – the entire community is zoned in a conventional manner. However, the law provides that a property owner with a minimum number of acres, say 20, has the option of applying to develop his or her holdings as a PUD.
In this case, the property is subject to different set of controls. The density permitted may or may not be the same as that stipulated by the conventional ordinance and the uses permitted may or may not be the same. The entire site plan will be reviewed as a single entity under a review specified by the PUD ordinance.

Cluster Zoning – another technique to free the site designer from the rigidity of conventional Euclidian zoning while still letting the community retain control of the over-all effects of development. Cluster ordinances, which generally apply to residential development, permit the building of houses on smaller lots, provided that the space saved is used for community purposes. Completed development shall have no more houses in it than it could contain if developed with the original requirement.

Performance Zoning/Flexible Zoning – stipulates what or may not be done in terms of end results instead of giving detailed regulations on the exact form of development. It can be regarded as an attempt to achieve the same goals as conventional zoning but in a more flexible manner. Hallmark is the use of performance standards to determine appropriate uses and development designs for parcels of land. Flexible zoning ordinances therefore incorporate performance standards for land uses, site design, and building characteristics and provide administrative mechanisms that minimize discretionary actions by public officials.

Development Agreements – a municipality may pass enabling legislation that permits municipal governments to enter into “development agreements”. These bypass the existing zoning, though they must be in conformity with the comprehensive plan. The contract between the developer and the municipality specifies what the developer may do and also what he or she is required to do within the project area. The developer benefits by being permitted to do things not permitted under the existing zoning.

Exactions – the exaction technique may be used to achive similar results as incentive zoning. For example, a municipality, instead of using exactions, offers density bonuses to office developers who build downtown housing. Both the exaction and the bonus technique will work best where growth pressures are strong and land availability limited. If the community is hungry for development, it will not burden developers with the additional costs of exactions, nor will density bonuses be particularly attractive. Rather than demanding exactions, the municipality may be offering subsidies or tax abatements.

Thursday, September 25, 2014

Review Notes: Planning Terms

ARCHITECTURAL PLANNING

Greenbelt   
A wide area of parks of undeveloped land surrounding a community

Platting      
The process in which a piece of land, referred to as a parent tract is subdivided into two or more parcels

Azimuths   
Angles measured clockwise form any direction (meridian) usually north, however national geodetic survey uses south

Final Plat   
Usually the last stage of the final site development process prior to the issuance of the building permit

Urban sprawl      
A 20th century problem emanating from rapid urbanization of areas surrounding a city

Advocacy Planning        
A type of planning which emphasizes that the proper role of the planner is not to serve the general public interest but to serve the interest of the least fortunate

Sustainable land use Planning 
It is the type of land use planning that emphasizes management of land resources

R.A 7160    
This code mandates that all LG4’s shall prepare their comprehensive land use plans & enact them through zoning ordinances

Promote human growth
Reason for planning
Sustainable development         
Phrase used to characterize development that mends the needs of the present generation

Hippodamus of Miletus 
First planner & developed the Gridiron

City  
A locale with a sizeable agglomeration of people having characteristics of an urban being

Agricultural surplus      
The main reason why the nomadic existence of early man metamorphosed to village settlement & later to cities

Insula         
The rough equivalent of the present tenement cities that existed in ancient Rome

True bounded city         
In urban geography, a concept where urban settlement is confined to the area within the legal limits of the city & the congestion & virtually all of this area occupied by residents

City planning       
A land development decision is also what kid of decision the orderly arrangement of urban streets & public places

Daniel Burnham  
He conceptualized the city beautiful movement

Subdivision Regulations
A tool used to control the manner in which raw kind is subdivided & placed on the marker for residential development

Urban Design      
A profession which falls between planning & architecture

Human settlement
The science of human settlements by definition settlement inhabited by man

Capital facilities Plan
Planning for roads, bridges, schools

Physical Settlement       
The container of man, which consist of both the natural & man made or artificial

Concentric zone theory 
A spatial organization concept a general view of the pattern of land use in a city. Developed by E.W Burgess

Buildable area     
The remaining space in a lot after deducting the required minimum open spaces

Dwelling unit       
A habitable room for 1 family with facilities for living, sleeping, cooking & eating

Gabion wall
A type of retaining wall made of rectangular baskets of galvanized steel

Cliff  
A very steep slope of rock or clay

Meadow     
A pieced of grassy land, especially one used for growing hay or as pasture for grazing

Ridge
A long, narrow chain of hills or mountains

Ravine       
A long, deep, narrow valley eroded by running water

Restriction 
On land, and enclimbrance limiting its use for community or mutual protection

Parcel        
On land, a contiguous land area which is considered as a unit, which is subject to a single ownership & which is legally recorded as a single piece

Common wall      
A wall that serves two dwelling units, known also as a party wall

Brasilia      
Niemeyer believed that relating large areas to each other is freedom as in the planned city of …

Density       
In architectural terms, it is the relationship of the number of residential structures & people

National Shelter Program       
The government arm responsible for the development & implementation of low cost housing in Phil.

Social Housing     
Housing provided for low income groups generally through government intervention & characterized by substantial & direct assistance

Earnest Money    
Sometimes called “this is a deposit given to the seller to show that the potential buyer has serious intentions

Amortization       
A provision made in advance for the gradual liquidation of a future obligation by periodic changes against the capital account

Deed 
Written document to transfer the property from one person to another

Developers 
They develop or improve the land as well as construct houses

Appraiser   
Determine the value of the houses & also is familiar with trends in the local market & the industry

Real Estate Broker        
Helps people find a place to live, specializing & matching wants of buyers with the local supply

Total system        
Are usually large concrete slabs or otherwise panelized units fabricated in a shop & assembled on site

Housing code       
Codes that deal with the use, occupancy & maintenance of existing building

Zoning       
Designed to regulate land use, to ban industry & commerce from residential areas & to separate different types of living units

Prefabricated Manufacturer   
Construct three dimensional volumetric units in a plant on a production & then hauled to the site

Subsystems
System building is a complete integration of all

Urban Renewal    
The improvement of slum, deteriorated under utilized areas of the city

Code of Municipality tradition
An area which is within city limits, or closely linked to it by common use of public utilities & services two major hindrances to the prefabrication industry

Primative
Vernacular
Grand        
Three general type of structures

Productive use     
A piece of land with an economic use for farming

Health & general use     
Lands for well-being like a parks, plazas

Social implication
As the cost of land, neighborhood have this effect

8.00 m        
Minimum road width in a neighborhood to ease traffic flow

Bedroom    
Which building component receives priority location to have morning sun

Growth & change
Urban planning is briefly described as the guidance of

Gazebo       
A lattice structure that serves as a summer house

Grass & Plants    
In landscaping, ground cover is represented as

Site Planning       
The art of arranging building & other structures in harmony with the landscape

Ecology      
The study of the dynamic relationship between a community of organism & its habitat

Accurate aerial    
Preparations of an accurate base map for urban

Mosaic       
Planning starts with

Comprehensive    
Appraisal for adequacy of a city’s water & sewer systems

Plan  
Needs of future land uses are embodied in the

Transportation    
Also called the blood stream of a city

System       
A form of absence of all the principles & organized

Urban blight        
Development of a community

Slot   
The city of Washington conforms to the plan type of

Freeways    
An efficient & rapid transport system for automobiles to circulate across urban to urban areas

Landmark  
A monument, fixed object, or marker used to designate the location of a land boundary on the ground

Lane 
A narrow passageway bordered by trees, fences or other lateral barrier

Land-Use Plan     
The projection of a future pattern of use within an area, as determined by development

Land
The part of the surface of the earth not permanent covered by water

Land boundary    
A lie of demarcation bet. Adjoining parcels of land

Land survey        
A survey of landed property establishing or re-establishing lengths & directions of the boundary line

Land use survey  
The study & recording of the way in which land is being used in an area

Latitude     
In surveying, the north south component of a traverse course

Lawn
An open space of ground of some size, covered with grass & kept smoothly mown

Lease
A contract transferring the right of possession of building, properties etc. to a fixed period of time, usually for periodically compensated “rent”

Leasehold   
A tenure by lease, real estate held under a lease



Wednesday, September 24, 2014

What is Zoning?

What is zoning?
• Legal regulatory tool to implement the land use plan
• Designation and allocation of territorial areas of city or municipality into
functional land use zones or districts
• Uses allowed in accord with goals and objectives of local development
plan

Who is responsible for zoning at the municipal government?
• planning works is vested on a planning and development office
• adaptation of zoning ordinances is a legislative function
• zoning administration is done by the executive branch of government

What are the most common zoning problems?
• discretionary special-use permit
• floating zone-recognizes emerging situations
• planned development unit-model town of mixed uses

What is provincial zoning?
It is as an extension of urban planning and zoning to cover the entire province
and/or one instituted by the provincial government

What are the types of land use controls?
a) Title ownership
b) Legal controls less than title ownership
- easements
- restrictive covenants
- leases
c) Public powers and influences, such as:
- taxation
- police powers
- public and private grants-in-aid

Tuesday, September 23, 2014

Review Notes: Site Planning

SITE PLANNING
The art and science of arranging the uses of portions of land is site planning. Site planners designate these uses in detail by selecting and analyzing sites, forming land use plans, organizing vehicular and pedestrian circulation, developing visual forms and material concepts, readjusting existing landforms by design grading, providing proper drainage, and finally developing the construction details necessary to carry out the project.
SITE DESIGN
Entails the whole range of concerns relating to the development, or redevelopment, of a piece of ground for some planned purposes. Common purpose is the construction of a building on the ground of a site; thus, building/site relations and interactions to direct physical connections and sharing of the site space are experienced or perceived.
Aspect of Site Design:
1. Site Development. Concerns items on and below the ground surface of a site, the   buildings and its various building utilities and services.
2. Concerns for Site Development:
Division of Site Development
The Micro-Site: Internal Concerns
The Macro-Site: Extended Environment
Building/Site Relations.
3. Fundamental concerns:
Routes of access to building entry point
Placement and orientation of building on site
Building base and foundation development
Underground connection to services/utilities.
 Basic Functional relations
General Character of the site
Neighborhood environment
Function of the site unto itself.

Site Conditions
1.      Existing Site Conditions
2.      Design Problem considerations
3.      Physical Site conditions
4.      Site Survey. Maps on boundaries, access road location and transportation  networks, utilities easement, and major site features.
5.      Helpful Maps. Geologic Map, Zoning Map, Aerial Surveys, General Map
6.      Site Development Plans
7.      Site Plans
8.      Grading Plans
9.      Construction Plans
10.  Helpful Data Sources: Surface Drainage, Existing Streets, Existing Utilities, Adjacent Properties
11.  General Information on:
-Ownership Legality/Access availability and usage
-Zoning Ordinance
-Weather and General Climatic Records
-Regional Demographic Studies
-General Community or Regional Development Plans
-Legal Constraints
-Ownership
-Usage Restrictions
-Building Codes/Local and National Building laws & Ordinances

THE ASPECTS OF SITE PLANNING
1.    Defining the site design problem. The problem considered is how to get a building on the site and which site situations may present constraints or difficulty.
2.   Traffic. Management of considerable traffic for both the pedestrian and vehicles. People and cars must be moved on and off the site and around the site for various purposes: entry, access roads, pedestrian routes, and vehicular system routes.
3.    PARKING. A requirement for all building sites. It may be a surface parking on a paved area or a structure parking within the building or in a separate building on site.
4.   THE VISIBLE SITE. Site Planning generally deals with the visible portion of the site as to what is seen walked on and participated or used by the users of the site and the buildings on it. It shall be considered from these views:
a.  All possible points: on the site, off the site, inside and outside the building, from  the neighboring buildings, etc.
b. At night, during daylight, with site lighting turned on or off.
c.  At different times of the year, different seasons affect landscape and environment of the site.
d.  By persons on vehicles passing through or just walking by.

BUILDING/SITE RELATIONS
Siting the building establishes the specific geometric, spatial relationship between a building and its site. Consisting of :
HORIZONTAL POSITIONING.
 Establishes the plan location of the building on the site considering the following factors:
1.      Setbacks
2.      Protection of easements
3.      Site space for driveways, walks, underground utilities
4.      Protection of views or privacy
5.      Construction allowances
6.      Topography
7.      The shape of the building (building ground level perimeter profile) is usually strongly related to the site form, especially for tight sites where the building covers a major portion of the site surface. The building shape is both restricted by the site form and strongly limits the potential for developing other site areas

VERTICAL  POSITIONING
1.      Relation to any existing buildings or other features
2.      Relation to existing site features: grades, ground water levels, soil conditions.
3.      Relation to existing underground utilities.
4.      Vertical locations of both the edges and buildings will also establish some conditions for other site elements- most notably sidewalks, driveways, terraces, breezeways or other elements involving traffic of people or vehicles.

Site drainage, as it affects both the site and the building, will be strongly defined. It is best to direct surface drainage away from the building edges, especially when there are basement spaces. Controlled drainage on a tight site or one with problem site edges may present a different situation, and building edges may actually be used as a site drainage collection points that feed into a sewer system.

ACCESS.
The access path typically begins with the concern for access on to the site, which is usually constrained by adjacent properties or streets for 2 forms of traffic – pedestrian and vehicular. Access also considers the provision of accessibility for persons with limited abilities
SERVICES. Consist of:
1.      Water supply
2.      Sewers
3.      Electrical power
4.      Gas
5.      Telephone lines
6.      Cable TV
7.      General deliver-mail and courier services
8.      Trash collection
9.      Firefighting
10.  Building/Site Spatial Continuity
11.  External viewed building as an object on the site
12.  Seen from the inside the building
13.  Entry and exit passage

SPECIAL CONCERNS FOR SITES
1.       Lighting. Electrically Powered Outdoor Lighting May Serve Various Purposes. Sometimes Several Different Purposes Can Be Fulfilled With the Use of a Single Fixture. It Is Important to Understand the Different Kinds of Illumination Needs in Order to Accurately Judge the Value and Appropriateness of the Many Different Lighting Systems.
2.       Height of Fixtures. Light Intensity Decreases Rapidly As Distance From the Source Increases; Thus, the Higher the Fixture, the Less Illumination Will Deliver at Ground Level. However, the Higher the Source, the Wider the Areas It Will Affect.
3.       Spacing of Fixtures. Widely Spaced Fixtures Will Result in Local Bright Spots With a Falloff of Illumination Between Them; Closely Spaced Fixtures Can Produce a Relatively Uniform Illumination.
A.      Form of Fixtures and Type of Lighting Elements
B.      Illumination of the Building Exterior
C.      Illumination of Traffic Paths
D.      Security Lighting
E.     Accent Illumination and Decorative Lighting

4.       Acoustics. Controlling sound on site is somewhat limited, compared to situations inside the building. Although not much can be done to modify or control this situation, site development offers some possible solutions for sound control as:
a.      Consider the location of sound generating facilities on site (mechanical rooms)
b.      Utilize ground forms (hills, etc)
c.      High site walls
d.      Tall dense plantings
5. Communication and signage. Communication functions are an aspect of site development. All entrances and exits should have signage for proper communications. It is a good design exercise to walk through a proposed site to see how much communication is achieved without recourse to signs. If this form of communication is optimal, the signs will work all the better, and will not fight with the visual signals on the site.
6. Security. A lot is enclosed through various means of enclosure to present a sense and actually secure the activities and the users. Nowadays, with the growing threat of terrorism and insurgency globally, security had been a major system in site development. Electronic gadgets, equipments are being developed to fill the gap in the market demand in this area. More and more users require a security system not just for their homes but in all the places, they are using.

LAND ANALYSIS
Topography

Topography describes the surface features of land. A topographic map shows the slope and contour of the land as well as other natural and artificial features. It is developed from a topographic survey by a land surveyor and includes:
•         Property boundaries
•         Existing buildings
•         Utility poles
•         Roads
•         Manufactured features
•         Trees natural features: rock outcroppings & heavy vegetation

Contour lines on a map are a graphic way to show the elevations of the land in a plan view and are used to determine the suitability of the land for various uses.
Contour intervals is the vertical distance between contour lines

SLOPE ANALYSIS CATEGORIES:

Slope 0%-4%         Usable for all types of intense activities and are easy to build on.
Slope 4%-10% Suitable for informal movement and outdoor activity and can also be but without much difficulty.
Slopes over 10%-25% Difficult to climb or use for outdoor activity and more difficult and expensive to build on.
Slopes over 25% Depending on the conditions of the soil, are subject to erosion and become more expensive to build on.

Respecting the natural contours and slope of the land is important from an ecological, aesthetic and ecological standpoint. Ideally, the amount of earth cut away in grading operations should equal the amount required to fill in other portions of the site.

NATURAL FEATURES
  1.      View analysis may be required to determine the most desirable ways to orient buildings, outdoor areas, and approaches to the buildings. Undesirable views can be minimized or blocked with landscaping or other manufactured features.
2.      Significant natural features such as rock outcroppings, cliffs, caves, and bogs should be identified to determine whether they must be avoided or can be used as positive design features in the site design.
3.      Subsurface conditions of groundwater and rock must be known also. Sites with high water tables (about 1.80-2.40 meters below grade) can cause problems with excavations, foundations, utility placement, and landscaping. The water table is the level underground in which the soil is saturated with water. Generally, the water follows the slope of the grade above, but it may vary slightly. Boring logs will reveal whether groundwater is present and how deep it is.
4.      Sites with a preponderance of rocks near the surface can be very expensive and difficult to develop. Blasting is usually required, which can increase the site development costs significantly (or may not be allowed by the city code restrictions)

DRAINAGE
Every site has some type of natural drainage pattern that must be taken into account during design. In some cases the drainage may be relatively minor, consisting only of the runoff from the site itself and a small amount from adjacent sites. This type of drainage can be easily diverted around roads, parking lots, and buildings with curbs, culverts, and minor changes in the contours of the land. In other cases major drainage paths such as gullies, dry gulches, or rivers may traverse the site. These will have a significant influence on potential site development because they must, in most cases, be maintained. Buildings need to be built away from them or must bridge them so that water flow is not restricted and potential damages are avoided. If modifications to the contours are required, the changes must be done in such a way that the contours of the adjacent properties are not disturbed.
The development of the site may be so extensive that excessive runoff is created due to roof areas, roads, and parking lots. All of these increase the runoff coefficient, the fraction of total precipitation that is not absorbed into the ground. If the runoff is greater than the capacity of the natural or artificial drainage of the site, holding pools must be constructed to temporarily collect the site runoff and release it at a controlled rate.
SOIL
Soil is the pulverized upper layer of the earth, formed by the erosion of rocks and plant remains modified by living plants and organisms. Generally, the visible layer is topsoil, a mixture or mineral and organic material. The thickness of topsoil may range from just a few inches to a foot or more. Below this is a layer mostly mineral material, which is above a layer of the fractured and weathered parent material of the soil above. Below all these layers is solid bedrock. Soil is classified according to grain size and as either organic or inorganic

GRAIN SIZE CLASSIFICATION and CHARACTERISTICS
Gravel particles over 2 millimeters in diameter
Sands particles from 0.05 to 2 millimeters in diameter, the finest grains visible to the eye.
Gravels and sands are excellent for construction loads and drainage and for sewage drain fields, but they are unsuitable for landscaping.
Siltparticles from 0.002 to 0.05 millimeters in diameters, the grains are invisible but can be felt as smooth
Silt is stable when dry or damp but unstable when wet. It swells and heaves when frozen and compresses under load. Generally building foundations and road bases must extend below it or must be elastic enough to avoid damage. Some non-plastic silts are usable for lighter loads.

Clay particles under 0.002 millimeters in diameter, smooth and floury when dry, plastic and sticky when wet.

Clay expands when wet AND IS SUBJECT TO SLIPPAGE. It is poor for foundations and unless it can be kept dry, It is also poor for landscaping and unsuitable for sewage drain fields or other types of drainage.
Peat and other organic materials are excellent for landscaping but unsuitable for building foundations or road bases. Usually, these soils must be removed from the site and replaced with sands and gravels for foundations and roads.

TRANSPORTATION and UTILITY INFLUENCES
1.  Roads provide a primary means of access to a site. Their availability and capacity may be prime determinants in whether and how a parcel of land can be developed. Basic Categories of Roads:
a   Local Streets have the lowest capacity and provide direct access to building sites. They may be in the form of continuous grid or curvilinear systems or may be cul-de-sacs or loops.
b   Collector Streets connect local streets and arterial streets. They have a higher capacity than local streets but are not usually intended for through traffic. Intersections of collector and local roads may be controlled by stop signs, whereas intersections with arterial streets will be controlled with stop lights.
c   Arterial Streets are intended as major, continuous circulation routes that carry large amounts of traffic on two or three lanes. They usually connect expressways. Parking on the street is typically not allowed and direct access from arterial streets to building sites should be avoided.
d   Expressways are limited access roads designed to move large volumes of traffic between, through and around population centers. Intersections are made by various type of ramp systems, and pedestrian access is not allowed. Expressways have a major influence on the land due to the space they require and their noise and visual impact.

2.  Public Transit
The availability and location of public transit lines can influence site design. A site analysis should include a determination of the types of public access available (whether bus, subway, rail line or taxi stop) and the location relative to the site. Building entrances and major site features should be located conveniently to the public transit. In large cities, site development may have to include provisions for public access to subway and rail lines.
3.      Service Access
Service to a site includes provisions for truck loading, moving vans, and daily delivery services. Ideally service access should be separated from automobile and pedestrian access to a site and a building. Space for large-truck turning
4.      Utility Availability
5.      Local Government Services

THEORY OF LANDSCAPE DESIGN
Landscape design is a complex process that combines the practical with the artful in a unified, functional composition.

The difference between the Landscape Architect and Landscape Designer
1.      Landscape Architect
–        an architect of the landscape, bringing together the natural balance  between the needs of people and ecology
–        they consider the wise land use and aesthetics in their work
–        they have the ability to create designs for everything from small intimate gardens  to new cities and parks of varying sizes
–        they understand the interrelationships of people and their surroundings and  enables them to solve the problems of land planning
2.      Landscape Designer
–        employed by landscape nurseries to design the work that the firm builds
–        familiar with the basic design principles, plant cultural requirements and landscape construction methods
–        projects are usually residential or small commercial jobs and consist primarily of planting design
–        they have a flair for design who has an ornamental horticultural background

Fields of Specialization in Landscape Architecture
1.   Community and Multifamily Housing Development
New Towns, Planned Housing Communities, Condominium, Apartment Complexes, Site Selection, Environmental Assessment, Rezoning, Code Compliance, Site Planning
2.  Parks and Outdoor Recreation Facilities
Mountain and Seaside Resorts, Golf Courses, Theme Parks, Tennis Centers, Water Parks, Family Fun Centers, Outdoor Amphitheaters, Ski Areas
3.           Commercial and Industrial Development
Shopping Centers, Malls, Office Complex, Mixed-use commercial projects, Rooftop Plazas, Urban Plazas, Public Transportation Facilities, Airport environs, Industrial Parks, Corporate Headquarters, Other Corporate Facilities
4.           Planning and Analysis Projects
Scientific, Research and Feasibility Component, Establish criteria, provide vision and set goals for future design and development, Land Planning for residential communities, large-scale urban mixed-use development and campus planning, Setting criteria and goals for the wise and sustainable use of natural and cultural resources
5.           Institutional Projects
Foundations, Associations, Church Organizations, Private Social Agencies, Youth Organizations, Museums, Zoos, Private Universities

6.           Single-family Residential and Garden Design Projects
7.           Land and Water Reclamation and Conservation Projects
Reclamation of Disturbed Landscape, Conservation of Open Spaces, Marsh and riparian , landscapes, Beachfronts and dunes, Mines and Landfill Operations, Logging and Agricultural landscape, Manage the Team of ecologists, botanists, wildlife biologists, fisheries experts, archeologists, others with expertise in natural and cultural resources work
8.           Interior Landscape Architecture
Deal with climate controlled spaces, natural or artificial light conditions for plants and maintenance issues, Atriums, Lobbies, Shopping malls, Airports, Conservatories, Indoor Walkways
9.           Historic Preservation and Restoration Projects
Residential Gardens, Parks, Scenic Routes, Explorers Routes, Settlers Routes, Parkways, Arboretums, Zoos, Cemeteries, Residential Areas, Towns, Villages, Industrial Sites, College, Campuses, Waterfronts, Other Culturally Shaped Landscape, Historic Inventories and surveys, preservation, rehabilitation, restoration and reconstruction
10.           Landscape Art and Earth Sculpture

DESIGN ANALYSIS
•        It consists of both a site analysis and an analysis of people’s needs.
•        It identifies problems to be solved during the landscape designing process
•        Identifying all landscaping problems is the first step toward their solution

1.     Site Analysis
-        Includes measurement of lot dimensions, location of the building on the lot, easements setbacks, other legal requirements, measurement and recording of building features and utilities, direction of prevailing wind, site terrain, locate and assess the value of natural features, note all good off property views as well as bad property features, note to screen noise and other nuisances, existing macroclimate and microclimate conditions, check soil depth, rock content for analysis, etc.

2.     Analysis of People’s Needs for Residential
–        People’s needs can be varied as the people themselves. Good designer should stimulate their thoughts
–        A comprehensive analysis of people’s needs includes, whenever possible, their plans for the future as well as the present:
Ages, sex, hobbies, personal plant preferences, time spent in the maintenance, whether permanent or interim, driveways, car requirements, patios or decks needed, suitability of walks and paths, swimming pool or other water features, activity areas, service area requirements, children’s play area, storage needs, any other special accessories desired in the landscape, etc.

AREAS AND CIRCULATION
1.      Defining Areas in the Landscape
-       Circulation between areas should be of prime importance when locations for those areas are determined
      -       Proportions should be a factor at all times as general areas are designated. Areas should be more wide than deep for the best appearance
2.      Circulation
      -       Circulation elements should be provided in the landscape for both motor and pedestrian traffic
      -       Distinguish primary walks (for more than one person) and secondary walks (for one person, only if necessary)
      -       Driveways should be designed for easy use, regardless of car size, but generally should be inconspicuous as possible
3.      Decks and Patios
      -       Should be designed for the normal, daily amount of traffic, with overload capability built into surroundings areas
      -       Choices between decks and patios, the size of these elements, and their importance evolve from the design-analysis information

LAND FORMS
Nature has blessed us with a terrain that sheds excess water and adds much interest to the landscape of the country. It is the designers duty to work within the boundaries of nature when altering the land forms in any way.
1.    Studying Land Forms
a.     Drainage. The Rules of Drainage is simple. Water runs downhill, and the steeper the hill, the faster the pace of the drainage. In a depressed area, water will stand, causing natural swamps and lakes. River and streams occur at the lowest points of surrounding terrain, where decreasing relative heights, in coordination with the earth’s gravitational pull, cause surface to flow.
When people design drainage patterns, they create hills and valleys that will function in harmony with surrounding natural patterns. By using the minimum slope to drain a steep site, spreading the drainage over a wide base, and protecting the surfaces of the drainage areas as well, the designer minimizes the erosion effects of drainage.

b.     Surveying
The determination of the relative levels of a land mass for the purpose of making a topographical map is accomplished by taking a survey.
c.      Mapping Survey Results
A topographical map results from interpolating all whole-numbered contour lines located within the grid system of a survey, then connecting lines between all contour points of equal number. Contour interpolation is a mathematical process for locating a whole-numbered contoured line that falls between two sightings on a grid-system survey

2.     Alteration of Land Forms
Grading is a process by which the land forms are molded to the physical configuration necessary for a given set of circumstances.
Cut and Fills.
Cut is the removal of a prescribed depth of soil within the space between an existing and proposed contour lines.
Fill is the addition of a prescribed amount of soil over the existing contour in the space between existing and proposed contours.
The manipulation of contours for landscape purposes is always dependent on the rules of topography, for example, water follows the steepest route, flowing at right angles to contour lines; and so forth.

Alteration of land forms results in designing the following
-        Terraces – provides a more level space or series of spaces. It can be built with or without retaining walls. If used with retaining walls, it allows the maximum useful space because of the vertical structure of the walls
-        Retaining walls – used to retain the soil, thus allowing the maximum usable space between changes in level, while at the same time controlling the surface-water drainage
- solid walls, dry rock walls, dry block retaining walls, railroad-tie or landscape-timber walls, post walls, wooden retaining walls, bio-engineering
- Criteria in Choosing the Type of Retaining Wall
a.      Height and strength requirements
b.      Surface drainage behind the walls
c.      Materials used in other features on the property
d.      Shape of the retaining wall
e.      Availability of materials
f.        Cost
-        Berms or mounds – provides screening, wind protection, and a higher platform from which to start young trees and shrubs must look natural, not contrived, and must be in keeping with terrain features found around the property
-        Subsurface drainage – used when surface drainage system can not solve a problem. It is used with area drains and catch basins to collect and filter the water entering the drainage system

WALLS AND CEILING
The walls, ceiling and floor are the dimensions of the outdoor “room.” A ceiling (the sky) and the floor (the ground) are always present, though they might require modification. The walls are created as part of the landscape design. The structure of any one of the three may affect the appearance and/or function of the other two
1.     Walls – the most satisfactory landscape walls often combine both structural and planting materials
   -          Screening – requires walls of certain sizes and densities
   -          undesirable views
   -          the view into the landscape from the outside area
   -          dust and other pollutants
   -          noise
   -          Framing good off-property views
   -          Protecting and insulating from the wind
   -          Filtering breezes into the property
   -          Providing enclosure – either absolute (impenetrable) or implied

Ceiling – may be provided by structural roofs, awning, arbors, or the like, or by shade and ornamental trees
-          Shade from the hot summer sun – it will depend on accurate recognition of the time of day when the shade is necessary, the path of the sun over the property, and the angle at which the sun penetrates the area during the time that the shade is needed. Recognition of the density of the shade desired is necessary
-          Protection from the elements (rain, snow, etc.)
-          Screening from the dust and other pollutants

PRINCIPLES OF PLANTING DESIGN
Physical Properties of Plants
1.      Form
-    Plant forms tend to reflect the natural terrain of the areas to which they are native. Good design calls for the use of these predominant forms to blend with the natural surroundings
-   Typical tree forms are oval, columnar, round, pyramidal, weeping, conical, irregular, vase, fustigate
 - Typical shrub forms are horizontal-spreading, weeping, round, leggy, upright vase, arching-spreading, mounded, erect, prostrate, trailing, mat-like, horizontal-creeping, narrow pyramidal, conical
 2.      Texture
- ranges from fine through coarse. It is created by the stems, leaves, bark and buds and can be seen and felt
3.      Color
-         it results from light penetration, absorption and reflection. The more light rays are reflected, the brighter the color; the more absorbed, the darker the color will be.
-         Hues are the result of light rays of variable lengths being reflected in mixtures

UNITY IN DESIGN
The principle of composition must apply from typical viewing points as well as when moving through the landscape

1Simplicity – breeds elegance. Simple lines forms and functional designs are always more interesting than complex and hard-to-digest-designs
  Variety – used to control repetition and spark the viewers interest, to prevent monotony
   Emphasis – or a focal point. It may be created by means of an accent plant serving as an accent plant, a hard element or a landscape embellishment
    Balance – either symmetrical or asymmetrical. It must exist not only from side to side, butr also from foreground to background of the view

1.Sequence – can be created by a progression of form, texture or color. It is the rhythm of the landscape, causing the eye to progress to a point of emphasis then move away gradually to the rest on another point of emphasis
    Scale – by controlling the proportionate scale of landscaping features, the designer evokes emotion. It is usually desirable to make people comfortable and relaxed, that is why landscaping  is done on a normal scale to which people relate easily

PLANTINGS AND ARCHITECTURE
Buildings are not natural elements, so landscaping help is required to tie the buildings to the land
1.    Elevations of Architecture – In elevational view, the designer can determine the dominant lines in the architecture as well as its structural mass
Balancing Structural and Plant Masses - Reversing structural masses in planting units helps to balance and strengthen the building-landscape relationship
Enframement Trees – help tuck the building into the landscape. They must be placed with all viewing angles in mind. The enframement trees must be proportionate to the size of the
1.   Colors and Architecture – complementary colors in subtle combinations are usually better than stark contrasts that command too much attention
     Visual Interest: Architecture or Plantings – A correlation exists between the amount of visual interest in the building architecture and the amount required of the landscaping. The more visual weight contained in architecture, the less visual weight is required of the landscaping, and vice
Focal Points – may be created at an entryway by a sequence of color or texture or both. Embellishments may be used for accent, or ground pattern lines may direct attention appropriately

MATCHING PLANT MATERIALS TO DESIGN CRITERIA

1.    Specifications for Plant Selection – Plant selection should always be based on specifications built during the design process and without consideration of personal prejudices
a.     Climatic Adaptability and Hardiness
b.     Soil Requirements
c.      Sun or Shade Requirements
d.     Size and Form
e.     Texture
f.        Color of Foliage
g.     Growth and Development Rate
h.      Insect and Disease Susceptibility
i.        Flower and Fruit Production
j.        Commercial Availability and Price
k.      Special Use Considerations
l.        Nomenclature

2.   Plant Sizes at Purchase
3.   Plant Conditions at Purchase

GROUND COVERS
1.   Ground Patterns
a.     Straight-line Patterns
b.     Curved-lines patterns
c.      Arc-and-tangent lines
2.      Flooring
a.     Lawn Grasses
b.    Living Groundcovers

Advantages:
     - Natural color and form
       Air-cleaning qualities
    - Heat absorption
    - Stability of root system
    -Contrast in heights
    - Catches and holds debris
    -Provides a wildlife habitat

Disadvantages:
Establishment time
Degree of Maintenance
- Wildlife habitat
- Accessibility
- Veining qualities

c.  Nonliving Groundcovers
d. Bare Soil under Plantings
Advantages:
-  Good growing medium
-  Color contrast
-  Low cost
-  Availability for rowing other plants
Disadvantages:
-  Erosion susceptibility
-  Higher maintenance Mud

EMBELLISHMENTS
Serve the landscape as desserts serve to complete a good meal. Both enhance the flavor. To a large extent, embellishments provide the individuality in each landscape
1.      Flowers
-   Considered embellishments, although short-seasoned, they are visually demanding that they must be used with extreme care so that they do not override other landscape features
-   It should never be used where intense attention is unwarranted
-   Should always be planted in color masses of nicely contrasting or complementary colors. However, confusion is created by indiscriminate planting of separate plants of individual colors
2.      Nonessential Construction Features
            -   Includes ornamental walls, raised planters, seats and benches, ornamental fences and flower boxes can contribute additional colors, textures, and forms to the landscape
3.      Sculpture and Statuary
            -   Extreme care must be taken when using these to keep them in good proportion to surrounding elements
4.      Water Features
-          - It provides additional sights and sounds in the landscape, as well as helping to alter the environment
-         - Provision must be made for an electrical supply and for lights and pumps
5.   Others
-  Collected pieces of art that would be good proportion to elements of the indoor rooms are often quite disproportionate in the outdoor rooms
-  The sounds of running water, birds, and musical chimes or bells are usually welcomed as background  in the landscape
-  Lighting is used functionally in the landscape to illuminate circulation routes anfd to provide security to the area
- Dramatic garden lighting can highlight garden features while making the landscape more usable at night
- Lights should always be placed above or below eye level
-  Dark surfaces require brighter illumination than light colored surfaces but do allow greater contrast
-  Special seasonal effect can be created by dramatic lighting of the landscape


Friday, July 26, 2013

Syllabus for the Philippine Licensure Examination for Architects (LEA)

BUILDING MATERIALS , ARCHITECTURAL SPECIFICATIONS  AND METHODS OF CONSTRUCTION

A. Rationale and Description
1. Understanding of the properties of building con¬struction and finishing materials; their applica¬tion and articulation; systems and methods of specifying and construction;
2. Awareness of the different types/ formats of architectural specifications and presentations i.e. specifications brief, outline specifications, specifications matrix, technical specifications, schedules of finishes/ fenestrations (doors and windows)/ fixtures (sanitary, electrical, etc.)/ furniture (assembled, custom, etc.)/ equipment/ hardware, etc. ;
3.    Understanding of the types of con¬struction systems and methods; and
4. Application of certain management principles relative to the realization of the various stages of construction (including pre-construction and post-construction)

B.  Terminal Competencies for LEA Candidates
1. Ability to promote awareness and to apply in practice the principles of public safety through the correct specification and application of construction and finishing materials;
2. Ability to utilize the basic properties and compositions of construction and finishing materials, including their basic application and articulation for the building envelope;
3. Ability to specify appropriate building materials considering their applicability, practicability and functionality and in accordance with the standard and uniform system of architectural and/ or building specification e.g. Masterformat, etc.;
4. Ability to expresses the language of building materials, both in English and the vernacular e.g. Filipino, as used in the construction and design industries;
5. Ability to apply the essentials of architectural specification writing in identifying, recommending and using the appropriate type of materials for a particular building situation and/ or condition;
6. Ability to utilize architectural specifications as non-graphical tool to fully complement architectural working drawings;
7. Ability to promote awareness and to apply in practice the principles of public safety through systems and methods of construction;
8. Ability to describe the essentials of working drawing production through the language of graphical presentation;
9. Ability to translate conceptual architectural designs into architectural working drawings;
10. Ability to do detailing for architectural working drawings;
11. Ability to apply methods and techniques in the production of construction drawings/ documents for the construction, erection or assembly of a building/ structure;
12. Ability to describe essential concepts and principles relative to construction, erection, assembly and fabrication of various types of common buildings;
13. Ability to apply the different methods and techniques of estimating different quantities of materials, equipment and labor for use as a basis for sound project programming, scheduling and control;
14. Ability to describe the fundamental principles governing the design, purpose and application of the different types of non-conventional systems of construction and the advantages of using such systems;
15. Ability to provide some architectural working details for the various types of alternative building construction systems and components;
16. Ability to describe the latest system/s available in the construction industry; and
17. Ability to comprehend tender and construction documents and to understand the basic functions and legal importance of such documents.

C. Scope
The applicable architectural specifications for the following conventional and alternative building works:
a. Non-engineering civil works;
b. Carpentry and joinery;
Concrete and masonry;
d. Various metal works;
e. Structural steel for architectural applications;
f. Concrete and reinforced concrete for architectural applications;
g. Waterproofing, damp-roofing, insulation and the like;
h. Glass and glazing;
i. Painting and varnishing;
j. Doors, Windows and Other Fenestrations;
k. Hardware; and
1. Specialty works (pre-fabrication, vaults, signage, parking systems, etc.)

           The methods of construction for the following conventional and alternative building works:
a. Non-engineering civil works;
b. Carpentry and joinery;
c. Concrete and masonry;
d. Various metal works;
e. Structural steel for architectural applications;
f. Concrete and reinforced concrete for architectural applications;
g. Waterproofing, damp-roofing, sound and thermal insulation and the like;
h. Glass and glazing;
i. Painting and varnishing;
j. Doors, Windows and Other Fenestrations;
k. Hardware; and
1. Specialty works (pre-fabrication, vaults, signage, parking systems, etc.)

HISTORY OF ARCHITECTURE

A. Rationale and Description
1. Understanding and analyses of architectural manifestations from the beginning of civilization to contemporary periods of development; and
2. Understanding and analyses of the influences of environmental, historical and socio-cultural factors and their relevance to the development of art, buildings, structures and of human settlements.

B. Terminal Competencies for LEA Candidates
1. Ability to relate the history of arts and architecture as well as the technologies and human sciences to considerations of ecology and sustainable development;
2. Ability to identify/ differentiate, analyze and compare evolved architectural styles; 
3. Ability to relate past architectural styles to the development of present-day utility and construction systems/ technologies;
4. Ability to help reinforce culture and architecture as reflected in tradition, convention and/ or current practices;
5. Ability to utilize insights in the history of the human community/ settlements planning and design, with special emphasis on Asian structures/ buildings/ settlements;
6. Ability to relate the evolution of Philippine architecture to historical and present-day architecture in Asia and elsewhere.

   C. Scope
1.. Introduction
a. The origin of architecture;
b. Historic styles of architecture; and
c. Factors affecting architectural solutions and styles.
2. Pre-Historic Architecture
a. Centers of development; and
b. Dolmen, Menhir, Cromlech. 
3. Historic Styles of Architecture
a. Period/ extent and centers of development;
b. Factors that affect the development of archi¬tectural solutions and styles (historical, environmental and socio-cultural);
c. General characteristics (architectural, struc¬tural, decorative, etc.);
d. General contributions; and
e. Notable examples.
3.1 Ancient architecture and the Western succession
a. Egyptian;
b. West Asiatic;
c. Greek;
d. Roman;
e. Early Christian;
f. Byzantine;
g. Romanesque Architecture in Europe;
h. Gothic Architecture in Europe;
i. Renaissance Architecture in Europe;
j. Nineteenth and Twentieth Century in Great Britain;
k. Architecture of Africa, Australia and New Zealand;
1. Nineteenth and Twentieth Century Architecture in Continental Europe; and
m. Architecture of the Americas.

3.2 Architecture in Asia and the Pacific Re¬gion

3.3 Architecture in the Philippines
a. Architectural legacies
a.1 Vernacular,  Folk and Pre-Spanish Architecture (before 1550 A.D.);
a.2 Spanish Colonial Architecture (1550-1899 A.D.);
a.3 American Colonial Architecture (1900-1945);
a.4 Architecture of the Commonwealth Period and of the Post-World War II period (1946-2000); and 
a.5 21st Century Philippine Architecture (2001 to present).
b. Architectural preservation, conser¬vation and restoration
c. Pillars of Philippine Architecture
c.1 Philosophies of Famous Filipino Architects; and
c.2 Examples of great works.

THEORY OF ARCHITECTURE
A. Rationale and Description
1. Understanding of the theories and principles of architectural programming, space planning, architectural planning and design and of the architectural program/ plan/ design process;
2. Understanding and analyses of the anthropometric, proxemic and kines¬thetic requirements of space in relation to the architectural program, plan and design preparation; and
3. Understanding and analyses of the socio-cultural and technological influences that contribute to the development of contemporary architecture.

B.  Terminal Competencies for LEA Candidates
1. Ability to identify, relate to and apply the principles of architectural programming, space planning and architectural planning and design to other art forms; 
2. Ability to transform the psychological, visual and perceptual language of architecture to symbols and representations of architectural programs, plans and designs; 
3. Awareness of construction and design industry standards for architectural program, plan and design preparation, particularly applicable space planning standards/ practices;
4. Ability to assess current theories and principles on architectural programming, on space planning and on architectural planning and design and to apply these theories and principles in the architectural program/ plan/ design processes; 
5. Ability to apply anthropometrics and ergonomics to architectural programming, to space planning and to architectural planning and design; 
6. Ability to apply the proxemic and kinesthetic requirements of space for human comfort in the context of Filipino culture, behavior and tradition and to anticipate the effects of these on architectural programs, on space plans and on architectural plans and designs;
7. Ability to apply analytical tools in determining the relevance of architectural programming, space planning and architectural planning and design theories to cultural development;
8. Ability to utilize critical socio-cultural and technological methods for analyzing architectural programming, space planning and architectural planning and design concepts in relation to national/ state development thrusts;
9. Ability to correlate architectural programs, space plans and architectural plans and designs with interior designs and landscape architecture plans and designs through a holistic approach.
10. Ability to effectively address climate, orientation and building environment/ setting considerations in the architectural programming, planning and design process.
11. Ability to employ different processes and instruments that shall result in a climate-/ setting-responsive architectural program, space plan and architectural plan and design;
12. Ability to apply different concepts, theories and principles of tropical architectural programming, planning and design as these apply to different architectural planning and design problems; and
13. Ability to correlate the significance of the philosophies of great/ past architects and their works to contemporary architecture.
C. Scope 
1. Introduction
a. The nature of architecture;
b. Architecture as an art and as a science; 
c. Processes in architectural programming and space planning; and
d. Processes in architectural programming, planning and design. 
2. Elements of Architecture and the Basic Principles of Architectural Programming, Space Planning and Architectural Planning and Design
a. Need-specific elements;
b. Structural, circulatory, protective and deco¬rative elements;
c. Influences in architectural programming, space planning and in architectural planning and design;
d. Basic principles of architectural programming, space planning and of architectural planning and design; and 
e.   Principles of Composition.
3. Architectural Planning and Design Perception
a. Anthropometric bases of architectural programming, planning and design;
b. Space articulation and territoriality;
c. Visual and perceptual language;
d. Psychology of space; and
e. Proxemics and culture.
4. Tropical Architecture - Architectural Programming, Planning and Design with Climate
a. Climatic Design : elements, factors, concepts, analysis and application for comfort;
b. Theories and Principles of Tropical Architectural Programming/ Planning/ Design;
c. Influences and elements of Tropical Architec¬ture; and
d. Specific examples of Tropical Architecture.
5. Masters of Architecture
a. Philosophies of the Great Architects; and
b. Examples of great works.


PRINCIPLES OF ARCHITECTURAL PRACTICE

A. Rationale and Description
1. Understanding of the role, legal rights and obli¬gations and responsibilities of the registered and licensed architect (RLA);
2. Understanding, analyses and application of the various statutes, codes, and regulations affecting the state-regulated practice of the profession of architecture in the Philippines;
3. Understanding, analyses and application of the various international agreements affecting the global practice of the profession of architecture i.e. by duly-qualified Philippine RLAs outside the Philippines and by duly-qualified foreign architects (FAs) within Philippine territory; and
4. Understanding of the various aspects of the pro¬fessional practice of architecture as well as the efficient conduct of client and business-oriented relations for architectural planning/ design projects and for construction projects.

B.  Terminal Competencies for LEA Candidates
1. Ability to efficiently and effectively utilize legally-recognized types/ forms of architectural services in response to the needs of clients within the context of state-regulated professional architectural practice;
2. Ability to employ organized professional practice activities, basic concepts, tools and areas of application of business and office management, meeting/ monitoring project milestones and operational targets, etc.;  
3. Ability to conduct the post-evaluation and monitoring of completed projects and services;
4. Ability to implement the basic services of the registered and licensed architect (RLA) for effective organization, management and operation-related activities to satisfactorily deliver the RLA’s contracted services;
5. Ability to undertake comprehensive architectural planning and design services and the expanded role of the RLA beyond the regular architectural services;
6. Ability to prepares the various types of  architectural specifications and contract documents;
7. Ability to compute and evaluate architectural and other cost estimates involving construction, resource allocation and project management;
8. Ability to applies codes and standards of the profession and the laws, rules and regulations, guidelines, etc. relevant to the professional practice of architecture; 
9. Ability to understand and comply with the different laws that affect the professional practice of architecture in the Philippines;
10. Ability to understand and effectively address the legal consequences of an RLA’s actions as these relate to the pertinent laws, rules, regulations, guidelines and standards;
11. Ability to apply in practice the principles of public safety through building laws and codes;
12. Ability to comply with quality, cost and delivery standards;
13. Ability to apply ethical standards and professionalism in the practice of architecture i.e. ethical parameters applicable to situations in the practice of the profession;
14. Ability to comply with the moral responsibilities and obligations of a RLA to peers, clients, colleagues in the industry and society in general; 
15. Ability to understand and describe the processes involved in the generation of a globally competitive office/ project management system;
16. Ability to understand and appreciate the implications of a globally open practice; and
17. Ability to assume responsibility for personal and professional growth and the development of leadership qualities.

C. Scope
1. Current state regulations for the registration, licensing and practice of architecture, the Standards of Pro¬fessional Practice and the Code of Ethical Conduct
a. Statutes regulating the practice of architec¬ture in the Philippines
a.1 Republic Act (R.A.) No. 9266 (The Architecture Act of 2004) and its 2004 implementing rules and regulations (IRR), particularly those focusing on the relationships of the RLAs with the PRBoA and of the PRBoA with the PRC;
a.2 R.A. No. 8981 (The PRC Modernization Act of 2000) and its IRR; and
a.3 Professional Regulation Commission (PRC) and Professional Regulatory Board of Architecture (PRBoA) Resolutions  related to the Practice of Architecture in the Philippines.
b. Integrated and Accredited Professional Organization of Architects (IAPoA) - The United Architects of the Philippines as the IAPoA;
c. RLA’s Code of Ethical Conduct;  
d. RLA’s Credo;
d. Rights and responsibilities of the RLA;
e. Spectrum of architectural services;
e.1  Pre-Design Services
e.2  Design Services
e.3  Specialized Allied Services
e.4  Construction Services
e.5  Post-Construction Service
e.6  Comprehensive Services 
e.7  Design-Build Services
f. Architectural fees and charges;
g. Selection of the Architect and Methods of  Compensation  (including the conduct of architectural competitions); and
h.   Global Practice : GATS, APEC Architect, ASEAN Architect and its Mutual Recognition Agreements (MRAs)

2. General Laws, Building Laws and Related Regulations and Standards;
a. Architectural design standards, building and construction-related laws and their IRRs;
a.1 Presidential Decree (P.D.) No, 1096 : The 1977 National Building Code of the Philippines (NBCP) and its 2004 Revised IRR;
a.2 R.A. No. 8293 : 1997 Philippine Intellectual Property Code and IRR; 
a.3 The Philippine Civil Code, particularly Article 1723 on the civil liability of RLAs;
         a.4 R.A. No. 9285 : The 2004 Alternative Dispute Resolution (ADR) Act and Executive Order (E.O.) No. 1008 : The Construction Industry Arbitration Law;
a.5 Build-Operate-Transfer (BOT) Law;
a.6 R.A. No. 9184 : The Government Procurement Reform Act of 2003 and IRR; and
a.7 E.O. No. 278 : Practice of Architecture and Related Consulting Services for Foreign-Assisted Projects and its IRR and Guidelines;
b. Laws on real estate and subdivisions e.g. P.D. No. 957 and its 2001 IRR, etc.;
c. Laws on housing and human settlements e.g. Batas Pambansa (B.P.) No. 220 and its 2001 IRR, etc.;
d.   Awareness and general appreciation of P.D. No. 1096/ 1977 NBCP Referral Codes and their respective IRRs:
d.1  P.D. No. 1185 : Fire Code of the Philippines and IRR;
d.2  B.P. No. 344 : Accessibility Law and IRR;
d.3  Philippine Electrical Code;
d.4  Plumbing Code of the Philippines;
d.5  Sanitation Code of the Philippines;
d.6  Environmental Laws e.g. Clean Air, Water and Solid Waste Management Acts, etc.; and
d.7  National Structural Code of the Philippines. 
e.   Awareness and general appreciation of other professional regulatory laws (PRLs):
e.1  R.A. No. 1582 : Amended Civil Engineering Law of 1956, particularly its Sec. 24;
e.2  R.A. No. 8534 : Interior Design Law of 1997 and IRR; and
e.3  P.D. No. 1308 : Environmental Planning Law.
3. Other aspects of regulated architectural practice
a. Operating divisions of architectural practice, development, production, administration, and management (with emphases on prepa¬ration of tender and contract documents);
b. General quantity surveying for architectural works; 
c. Legal aspects of architectural practice e.g. administrative, criminal and civil cases, etc.;
d.      Business aspects of architectural practice;
e. 2008 Regional Trial Court (RTC) Decisions promulgated in support of RLAs; and
f, Various legal documents and issuances posted at the PRBoA website i.e. www.architectureboard.ph. 

PRINCIPLES OF PLANNING

A. Rationale and Description
1. Understanding and analysis of the concepts and techniques in macro-planning process at its various levels i.e. site and physical planning (specifically subdivision planning and master planning), human settle¬ments planning, urban and regional planning, land and water use planning, transportation planning, environmental planning, etc.; and
2. Understanding of the art and science of site and physical plan¬ning with emphases on their ecological, socio-psycho¬logical, aesthetic and functional bases.

B.  Terminal Competencies for LEA Candidates
1. Ability to utilize the art and science/s of site and physical planning with emphases on their ecological, socio-psychological, aesthetic and functional bases; 
3. Ability to relates the social issues and implications of site and physical planning; 
4. Ability to correlate history and macro-planning theories to ecology and sustainable development;  
5. Ability to employ the basic foundations of site and physical planning and the different macro-planning processes.
6. Ability to utilize useful planning techniques relevant to the rank of the architect as a planning and/ or design professional;
7. Ability to relate history and theories of site and physical planning, urban and regional planning, etc. to ecology and sustainable development; and
8. Ability to apply current thoughts and practices as regards site and physical plan formulation, implementation and monitoring. 

C. Scope
1. General Principles of Site and Physical Planning
a. Hierarchy of site and physical plans, definitions and classifications;
b. History and scope of site and physical planning; and
c. General planning process.
2. Urban and Regional Planning  
a. History of the urban and regional planning;
b. Theories of urban and regional planning;
c. Comprehensive land and water use planning (CLWUPs); 
d. Zoning ordinances (ZOs); and
e. Urbanization and urban social relationships.
3. Housing and Human Settlements Planning
a. Definitions and classifications;
b. State housing policies, programs and agencies;
c. State housing finance, production and practices;
4. The Art and Science of Site and Physical Planning 
a. Map and plan typology, identification and reading/ appreciation;
b. Site appreciation, analyses and programming; 
c. Primary considerations in site and physical planning e.g. physical, aesthetic, ecologi¬cal, socio-psychological, management, maintenance, etc.;
d. Subdivision Planning, Deed of Restriction and Development Guidelines; 
e. Master Development Planning (MDP); and
f.   Site Development Planning (SDP) for areas immediately surrounding buildings/ structures.

URBAN DESIGN

A. Rationale and Description
1. Understanding of the concepts and techniques in the general planning of physical settings and in the systematic/ comprehensive design of a community on an urban plane;
2.   Understanding of the art and science of urban design with emphasis on its ecological, socio-psychological, aesthetic and functional bases.

B.  Terminal Competencies for LEA Candidates
1. Ability to apply a sense of spatial order, scale, culture and history in handling urban design and community architecture problems;
2. Ability to develop an awareness of the need for expression and communication in the design of specific places in towns and cities;
3. Ability to utilize the knowledge of organization and behavior in the design of specific towns and cities through expression and communication;
4. Ability to associate the importance of community involvement/ participation and techniques in urban/community architecture; and 
5. Ability to describe the built environment in the context of ecological balance, sustainable development and conservation of cultural and historical heritage.

C. Scope 
1. General Principles of Urban Design and Community Architecture
a. Elements of urban design;
b. Community architecture e.g. orientation, identity, etc.;
c. Spaces in urban design, urban aesthetics and urban patterns;
d. Creating and identifying the sense of space;
e. Images of cities and symbols of urban design;
f. Cultural Basis of the design of communities;
g. Documenting the city: the system of design and process of presentation; and
h. Current public policy and concerns and legal considerations in urban design.
2.   Urban Design Theories, Rules and Processes
3.   Applications of design requirements for specific places in towns and cities:
a. Cluster Housing and Planned Unit Development (PUD);
b. Areas for Priority Development (APDs)/ Mixed Used Developments and Commercial Centers;
c. Industrial Parks and Districts;
d. Planning Educational Campuses;
e. Government/ Civic Centers and the Plaza Complex;
f. Village Planning,  Ecological Communities, Coastal/ Lakeshore Community Planning; 
g. Resort Community Planning and Design;
h. Parks and Open Spaces; Recreational Areas; 
i. Urban Renewal; 
j. Streetscapes; and 
k. Road rights-of-way (RROWs), ROWs and legal easements.


STRUCTURAL DESIGN (CONCEPTUAL LEVEL)

A. Rationale and Description
1. Understanding of the fundamentals of mechan¬ics, strength of materials and theory of struc¬tures; and
2. General conceptualization of the structural design for a building/ structure, its principles and analyses of the structural elements for the various types of construction materials, methods and systems to be used for the foundation, superstructure and shell of the building/ structure.

B.  Terminal Competencies for LEA Candidates
1. Ability to apply in practice the principles of public safety and structural stability;
2. Ability to generally conceptualize the building/ structure under combined loads and seismic forces;  
3. Awareness, appreciation and general understanding of he principles of stress and strain, bending, shear, torsion under plain and combined loads, shear and moment, determinate and indeterminate structures and elastic stability of columns;  
4. Ability to conceptualize structural design for simple timber, steel, reinforced concrete and composite buildings/ structures;
5. Ability to apply relevant provisions of P.D. No. 1096 (the 1977 National Building Code of the Philippines/ NBCP), the National Structural Code of the Philippines and other NBCP Referral Codes for simple timber and steel structures and simple reinforced concrete and composite buildings/ structures.  
6. Ability to read, understand and generally interpret structural plans, details, drawings, documents and soil investigation reports.

C. Scope
General conceptualization of structural design (including a basic understanding of seismic analysis), in the following building mate¬rials and construction systems:
a. Timber;
b. Reinforced concrete;
c. Structural steel;
d. Composite structures; and
e. Advanced construction methods.

UTILITIES

A. Rationale and Description
1. Understanding of the basic practices, principles, general design and installation and/or construc-tion of utilities required for a building/ struc¬ture and its grounds/premises;
2. Understanding and analyses of utility, facility, and equipment require¬ments in relation to aesthetics, function, and stability of a building/ structure and its pre¬mises.

B.  Terminal Competencies for LEA Candidates
1. Ability to identify and apply the fundamentals of building utilities and systems;
2. Ability to apply fundamental concepts and principles covering the general design and installation of electrical, mechanical, electronic/ communications, fire protection, building management, plumbing and sanitary systems, waste management systems, and the like in buildings and its grounds, consistent with trade practices and recommendations by the pertinent professionals;
3. Ability to applies the pertinent code provisions relative to the planning/ lay-outing, design, installation, operation and maintenance of such utility systems and their components; 
4. Ability to converse and coordinate with the professionals and their staff concerned with such utility systems and components;
5. Ability to apply the basic principles of planning, designing, operating and maintaining such utility systems and components;
6. Ability to identify and to apply  the different important aspects of acoustics and lighting as these relate to planning and design principles for buildings/ structures and their grounds; and
7. Ability to relate the psychological and physiological effects of such utility systems, sound and light on building occupants/ end-users.

C. Scope
Design and construction and/or installation of the following utility systems and their respective components:
1. Sanitary and Plumbing Systems and Equipment
a. Water source, storage, supply and distribu¬tion;
b. Plumbing rough-in and fixtures;
c. Drainage and sewerage systems; and
d. Waste collection, disposal, treatment and/or recycling.
2. Mechanical Systems
a. Heating, ventilating, and air-conditioning (HVAC) systems;
b. Conveyors and other building mechanical equipment e.g. elevators, funiculars, escalators, walkalators, etc.;
3. Electrical and Other Power Systems
a. Electrical power and lighting supply, distri¬bution and fixtures; and
b. Electrical power source and alternative power sources.
4. Acoustics and Illumination
a. The psycho-physics of acoustics and lighting; and
b. Acoustical treatment and corrections.
5. Disaster Prevention and Protection Systems; Se¬curity Systems
a. Building fire-fighting, prevention, and pro¬tection apparatus;
b. Installation and/or construction of the different protection systems;
c. Materials and fixtures; and
d. Disaster prevention and mitigation systems.
6. Communication Systems
a. Electronics system; and
b. Telephone, intercom, internet/ DSL, cable TV, audio/video facilities, public address (PA) system, etc.
7. Building management and other systems
a. Climate/ lighting/ security controls and related applications for buildings/ structures;
b. Robotics and related intelligent building features.

 
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