(2) Egyptian Experience in Green Architecture (1994-2008)
Transcript of (2) Egyptian Experience in Green Architecture (1994-2008)
Egyptian Experience in Green Architecture 1994-2008
Integral Design Approach
Professor Ahmed Reda AbdinProfessor of Architecture and Environmental Control
Cairo University
1 .The Beginning of Green Architecture
2 .Systems Integration
3.Integral Approach to Design
6 .Integral environmental design - Egyptian Examples
Egyptian Experience in Green ArchitectureEgyptian Experience in Green Architecture
4 .Egypt Energy Efficiency Building Code EEEBC
5 -Integral environmental design - International Examples
7.Factors to Consider for Green Architecture
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Egyptian Experience in Green ArchitectureEgyptian Experience in Green Architecture
1 .The Beginning of Green Architecture
Ancient Egyptian
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Egyptian Islamic Architecture
Sultan Hasan Madrasah
Egyptian Experience in Green ArchitectureEgyptian Experience in Green Architecture
1 .The Beginning of Green Architecture
5Egyptian Islamic Architecture
1 .The Beginning of Green Architecture
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Egyptian Islamic Architecture
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1 .The Beginning of Green Architecture
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Egyptian Islamic Architecture
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1 .The Beginning of Green Architecture
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2 .Systems Integration
ComponentElement System
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3 .Integral Approach to Design
Regional(region)
Urban (city)
Intermediate site)
Inner (building)
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Integral Design Approach
HumanSystem
BuildingSystem
5NaturalSystem
6Technological
System
3InteriorSystem
4TechnicalSystem
1Objectives
System
2ActivitySystem
Environmental
System
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3 .Integral Approach to Design
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Compliance ProcedureCompliance Procedure
CertificationCertification
Mandatory RequirementsMandatory Requirements
PrescriptivespecificationsPrescriptive
specifications Trade-offTrade-offWhole building
Performance
4 .Egypt energy efficiency building code EEEBC
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Prescriptive Tables
4 .Egypt Energy Efficiency Building Code EEEBC
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من لنماذج عالمية امثلة
المستدامة البيئية العمارة
5 -Integral environmental design - International Examples
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Energy EfficiencyAnd Renewable Energy (Strategies)
BigHorn Home Improvement Centre Silverthorne, Colorado (commercial buildings)
(Source: adapted from AIA, 2003) after Tarek Fargaly
Computer Controlled Clerestory Windows
Translucent Skylights
Radiant Floor Heating
Integrated PV Panels
Transpired Solar collector
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Environmentally Friendly High Rise BuildingLow-energy design and renewable energy at 4 Times Square
Filtration system for air pollutants
50% more fresh air provided
Floor by floor air quality monitoring
Environmentally friendly building materials
PV panels in curtain wall
High efficiency variable speed pumps, motors and fans
Gas fired absorption HVAC system
Alternative energy source
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Additional air shaft for smoking fumes and heat
Environmentally friendly building maintenance
Centralised automated building management
Existing tools re-used
Fuel cells
Removable crane for building maintenance
Integrated communications tower
Commissioning
High performance low-E glass curtain wall
Hat truss structure reduces steel use
Concrete core structure reduces steel use
Recyclable waste chutes
Recycled and recyclable building materials
Recyclable waste storage
Energy
Indoor air quality
Recycling
Recycling management
Efficient lighting Occupancy sensors
after Tarek Fargaly
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Energy Efficiency And Renewable Energy (Strategies)
Conceptual Proposals (Integrated Wind Turbines)
• The wind turbines shade the space below and generate electricity.
• This particular roof is designed to cover a large swimming pool in a desert environment. (Source: Jantzen, 2003)
• A two-tower 200-metre tall building with three integrated turbines. Optimum performance is obtained for smooth, rounded, fully 3-D building forms; towers with ‘Kidney’ or ‘Boomerang’ footprints produce the best wind enhancement. (Source: Campbell, 2001)
The Turbine Tower Project by Richard Rogers : designed to generate energy from renewable sources. (Source: Futagawa, 1995)
after Tarek Fargaly
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REFLECTION OF SUNLIGHT (Automatic Chasing Mirror System)
The size of the mirror is 2.25m2 for high rise building and 1.2 and 0.7 diameter for medium and low rise building.
The mirror starts chasing the sun when the solar altitude angle is higher than 10 degrees in the morning and stops when the angle is below 10 degrees in the evening
after Tarek Fargaly
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Mirror systems have a sensor to chase the daylight and reflect it downward
The sensor stops working in rainy day and at night An extra mirror can be installed to reflect daylight to
lower levels
REFLECTION OF SUNLIGHT (Automatic Chasing Mirror System)
after Tarek Fargaly
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REFRACTION OF SUNLIGHT (Fresnel Lenses)
Rotating flat prism technology directs the sun's rays downward.
This system automatically tracks the sun to direct collected light downward and create a comfortable environment after Tarek Fargaly
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Prisms direct the collected sunlight indoors.
The system uses solar cells to drive the two flat prisms
Ultraviolet and infrared rays are cut to provide light without temperature rises after Tarek Fargaly
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Laser Cut Panel redirect light through pyramid skylight
The use of angular selective glazing upon atria allows the rejection of high elevation direct sunlight whilst redirecting and therefore improving low elevation skylight penetration
REFRACTION OF SUNLIGHT (LCP angular selective skylights)
after Tarek Fargaly
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Collecting ,Transporting (Sun-tube), and Mixing
with Natural Artificial Light (HYBRID SYSTEM) 1. Collecting head unit2. Duct unit 3. Diffuser unit4. Sulphur lamps5. Hollow light guides6. Coupling and diffuser
unit7. Electronic control
system
Fresnel lens
Mirror
after Tarek Fargaly
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The system uses roof-mounted concentrators to collect and separate the visible and infrared portions of sunlight
The visible portion is distributed through large-diameter optical fibers to hybrid luminaires
Hybrid luminaires are lighting fixtures that contain both electric lamps and fiber optics for direct sunlight distribution.
When sunlight is plentiful, the fibre optics in the luminaires provide all or most of the light needed in an area. Unlike conventional electric lamps, they produce little heat
During times of little or no sunlight, sensor-controlled electric lamps operate to maintain the desired illumination level
Collecting ,Transporting (Fibre optics), and Mixing with Artificial Light (HYBRID SYSTEM)
after Tarek Fargaly
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من لنماذج محلية امثلة
المستدامة البيئية العمارة
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6 -Integral environmental design - Egyptian Examples
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Fouad Reyad House by Hassan Fathy
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Nubian Museum
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Alexandria Library
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وتغطيتها المزدوجة الجدران فى فتحات تنفيذ تمالشرقية الواجهات فى الومنيوم ليات بجرا
وذلك الزجاجية الفتحات واعلى اسفل والغربيةوخرجه اسفل من البارد الهواء بدخول للسماح
الحرارى التخلف زمن زيادة على للعمل اعلى منالداخلى الفراغ حرارة درجة تلطيف على ايضا و
East & West Elevation Details
New and Renewable Energy Authority
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Mixed-mode Conditioning System
This system is intended for medium occupancy densities and equipment loads.
It combines features of the first and thesecond systems, assuming a passiveoperation as described above with theaddition of a conventional cooling componentsuch as chilled beams.
New AUC Campus
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Misr University for Science and Technology
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Daylighting by Top Apertures
Example: North-facing monitors in laboratory at MUST
Energy Efficient Building in EgyptEnergy Efficient Building in Egypt
Designed by Dr Ahmed Abdin
Misr University for Science and Technology
Misr University for Science and Technology
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Integrating daylight design & ventilation
Energy Efficient Building in EgyptEnergy Efficient Building in Egypt
Designed by Dr Ahmed Abdin
Misr University for Science and Technology
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• Climatic and green design should constitute the main approach to design.
• Natural and ecologically green friendly building materials should be used along with minimum use of synthetic materials
• The design should consider the building in terms of the integral environmental system.
• The design should incorporate energy efficient systems.
• The main environmental forces should shape the buildings, the orientation and air intakes.
• Data in the composition of the air, soil, radiation, noise and vibration should form elements of the design.
• Maximum reduction of toxic emissions.
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7.Factors to Consider for Green Architecture
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• Facts on the composition of air, soil, radiation and noise and vibration should form elements of the design.
• Use of natural and ecological building materials minimal use of synthetic materials.
• The design should optimize the use of energy and satisfy internal comfort.
• Natural lighting and good colour sense should be employed.
• The building should be insulated from noise and vibration.
• The design should incorporate visual and aesthetic values.
• Fresh air ventilation should be ensured.
• Efficient day lighting should be ensured.
7.Factors to Consider for Green Architecture
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THANK YOU
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