KAUST LEED Présentation 30 03 2011 it green...1977: Birth of Saudi Oger & Oger International, with...

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1 Build it Green Conference – Beirut – March 30th 2011

KAUST ProjectFirst LEED® certified project in the Kingdom

& biggest LEED® Platinum Certified Project

in the world

Dr Gauthier BELHOMMEPhD, PE

Environmental Engineering & Sustainability Director

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Outline

• OGER Presentation

• KAUST Project Overview

• Project Sustainable Strategy

• LEED Achievements

� Sustainable Site

� Energy & Atmosphere

� Water Efficiency

� Materials & Resources

� Indoor Enviroment Quality

� Innovation In Design

• Project Sustainabilty Benefits

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Company Foundation

1950: Marcel Oger founded OGER Co.

1970: Oger uses highest crane in the

world to build the UAP Tower in La

Défense, Paris.

1977: Birth of Saudi Oger & Oger International,

with Hotel Massarah, Taif, Saudi Arabia.

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Staff & workforce (Nov. 2009)

More than 4,500

completed projects

Engineering work force

Subsidiaries and Affiliates

Incl. UAEIncl. UAE

Company Overview Today

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OGER over the world

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King Abdullah Financial District

85 000 m²- LEED® CS v2 Silver

Phare Tower - la Défense - 145 000 m²

LEED® CS v2 Gold

Jabal Omar – LEED® NC v2.2 Silver

Abu Dhabi financial City - 600 000 m²

LEED® CS v2 Gold

PNU -1 000 000 m² - LEED® NC V2.2 Gold

King Abdullah Financial District - 60

000 m² -LEED® NC v2.2 Silver

CARPE DIEM Tower la Défense

50 000 m² - LEED® CS v2 Gold

KAUST – 500 000 m2 - Certified LEED® NC Platinum

LEED® Projects & References

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KAUST Project Overview

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• Post – Graduate University – Thuwal on the Red Sea (Kingdom of Saudi Arabia)

• Capacity: 3500 residents et 2500 students

• 21 Academic & Administration Buildings

Project Description

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ACADEMIC BUILDINGS ADMINISTRATION BUILDINGS

Research Laboratories

Engineering & Science Building

Applied Mathematics Building

High Bay Lab

Greenhouse

4 x 57,000 m²

18,500 m²

32,000 m²

4,000 m²

1,500 m²

Administration & Conference

Library

University Center

Data Center

Auditorium

Mosque

Commons

28,500 m²

17,000 m²

8,000 m²

8,000 m²

14,000 m²

2,000 m²

8,500 m²

Total 284,000 m² Total 86,000 m²

Garage Buildings Area: 105,000 m²

TOTAL BUILDINGS AREA : 475,000 m²

Key numbers

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Client

ContractorA/E Company

HOK (USA)

Project Stakeholders

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Architectural Complexity

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Monumental Canopy (h = 18 m)

Architectural Complexity

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Two Solar Towers : h=70m

Architectural Complexity

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Architectural Complexity

Laboratoires on Cantilevers (L=13 m) connected by skywalks

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Super computer SHAHEEN

Technical Challenges

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December 2007

Septembre 2009

Project Schedule

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• 475,000 m² Buildings Floor Area

• 500,000 m² Land Area

• 1,500,000 m3 Backfill

• 221,000 lm Stone Columns (37,500 Units)

• 470,000 m3 Cast in Situ Concrete (Buildings & External Works)

• 172,000 m² Hollow Core Slabs

• 100,000 tons Steel Reinforcement

• 8,000 tons Steel Structure

Earthwork and Structural Work

Key numbers

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Enclosure, MEP, and Interior

�210,000 m² Facades including:

� 70,000 m² curtain walls

� 90,000 m² terracotta

� 50,000 m² stone cladding

�110,000 m² Roofing

�217,000 m² Interior Partitions

�7,000 Doors

� 76 Elevators

(incl. 6 freight elevators)

�185 Air Handling Units (18,500 T)

�110,000 lm HVAC Ducts

�2,200 lm 900mm dia. CHW Piping

�23,000 lm MV Cables

� 37 Substations (128,100 KVA)

Key numbers

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LEED Approach &

Strategy

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LEED-NC for Multiple Buildings & On-Campus Building Projects

LEED Version

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LEED

Certification

boundaries

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LEED Scorecard

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LEED Award – September 2009

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Sustainable Design

Strategy

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•Heat wheel energy recovery

•Chilled Beams

•Roof-mounted photovoltaic arrays

•Under floor air distribution systems

•Solar tower for passive cooling

•Natural day lighting with controls

•Solar shading devices

•Variable flow air and water systems

•Rainwater retention

•Solar hot water heater

•Waterless urinals and low-flow fixtures

•Regional, recycled, materials

•Construction waste management

•Electric campus vehicles

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Sustainable Site

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LEED Scorecard

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SS Credit 4 - Alternative Transportation

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Use of reflective materials & undercover parking

SS Credit 7 – Heat Island Effect

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SS Credit 8 - Light Pollution Reduction

Full cut-off luminaires

Campus lighting design to reduce light pollution

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SS preq1: Construction Activity Pollution Prevention

• Control erosion and sedimentation on site

• Control stormwater runoff

• Prevent pollution of soil, water..

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Energy & Atmosphere

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LEED Scorecard

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EA Credit 1 - Optimize Energy Performance (5 pts /10)

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Sustainable Architecture: Passive Ventilation

• Air movement between buildings is enhanced by two solar towers that use the sun’s

energy to draw air through the spaces between buildings

• The solar towers act as great passive ventilation engines that pull air through the

spine and courtyards using sun’s (Over 150,000 cfm of air flow = 255,000 m3/h)

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• Terracotta Cladding on BACKWALL SYSTEM: 10 cm (R-20) continuous

extruded polystyrene insulation and steel frame infill, U-Value = 0.2 W / m².K

• Spandrel glass with R-24 insulation, U-Value = 0.2 W / m².K

• Fenestration Assembly U- Factor = 2 W / m².K

• Built-up Roof Insulation (Rockwool) entirely above deck, R-36 continuous

insulation, U-Value = 0.14, Reflectivity = 0.30

High Efficient Buildings Enveloppe

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External shading systems were utilized throughout the campus to limit solar heat

gains and reduce loads: Louvered window shades, Fins, Overhangs…

Energy Conservation Measures

Cooling loads is very significant energy factor due to solar heat gain & occupant comfort

Building adjacencies contribute to limiting

solar heat gains.

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Active Chilled beams in the

classrooms

Task lighting & optimized control

Energy Recovery Wheel in all AHU

DCP to minimize GHG emission

Energy Conservation Measures

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Renewable Energies (2 points)

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EA credit 5 - Measurement & Verification

Continuous Energy Measuring & Reporting

Comparison to Calibrated energy Model Figures

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Water Efficiency

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LEED Scorecard

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Water Efficient Landscape

Native vegetation with low water demand

High efficient Irrigation system controlled by

Satellite Weather Station

Irrigation with Treated Wastewater

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Potable Water Use Reduction

Water-less Urinal – WC 6 L/Flush – Sink 1.9 L/Min

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Material & Resource

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LEED Scorecard

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MR p1 - Storage & Collection of Recyclables

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• Steel Products

• Curtain Wall

• Finishing Materials

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MR Credit 5 - Regional Materials

More than 350 Millions $ of regional Materials

Gypsum Boards

MCU

Concrete

Insulation Materials

Dalles alvéolaires

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99% FSC certified wood

(Doors, woodworks, flooring, wooden ceiling…)

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MR Credit 2: Construction Waste Management

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MR Credit 2: Construction Waste Management

No SAUDI Waste Company specialized in Construction & Demolition Waste

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Indoor Environment

Quality

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LEED Scorecard

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IE4 - Low Emitting Materials

Composite wood with zero

urea formaldehyde resinLow VOC paints

(Water Based)

Carpets systems

with CRI label

Low VOC adhesives & sealants

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IEQ p2: Tobacco Smoke Control

Non smoking Policy

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IEQ Credit 4.1: Construction IAQ Management:

During construction

Minimize contaminants entrance to the building and ventilation systems

HVAC equipments protection during storage & installation

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> Building Flush Out (PM10, TCOV, Formaldéhyde…) before occupancy

by supplying 100% exterior Fresh Air (400 m3/m2) without return

> Building Flush Out: during commissioning

IEQ Credit 4.2: Construction IAQ Management:

Before Occupancy

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Innovation in Design

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LEED Scorecard

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Innovation In Design ( 5 Points)

Environmental Education:

User Friendly Terminals: Displaying ICAS

data & public education focusing on

Green Building Strategies and Solutions.

Exemplary Performance:

• WE 3 – Water Use Reduction

40.9% reduction in potable water use.

(Use of very low flow plumbing fixtures)

• SS 7 – Heat Island Effect - 100% of parking

spaces under cover

• MR 7 – >95% of FSC Certified wood

• LEED® AP

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LEED Approach Benefits

����Annual Energy Savings estimated 700.000$ with on site Renewable Energies Sources in spite of

low kwh cost (0.07$/Kwh)

����Annual Energy Savings estimated 2 Millions $ compared to base building according to ASHRAE 90.1

����Potable Water Reduction 2000 m3/ day (irrigation)

����Potable Water Reduction 40% (12000 m3 / year) compared to conventional plumbing fixtures

����Health & Comfort:

- Controlled Indoor Air Quality to decrease SBS (Sick Building syndrom)

- Visual comfort and individual control (task lighting…)

- Optimized Individual control onf thermal conditions

����Permanent monitoring of energy use & data analysis

����Anticipation of O&M activities (Enhanced Commissioning)

- Training of O&M staff

- Complete System Manuals

- Re-commissioning to verify system performances after 10 months

65 Build it Green Conference – Beirut – March 30th 2011OGER INTERNATIONAL - Présentation LEED® Projet KAUST – Semaine du développement Durable

Thanks for you attentionGauthier BELHOMME

gbelhomme@ogerinternational.fr