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LEED: Leadership in energy and environmental design

LEED: Leadership in energy and environmental design. Gibbs INTD 153 Design Studio I. Topics. Why Green Design in Interior Design? Typical Client Motivations What is LEED? The LEED Rating System. Why Green Design in Interior Design?.

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LEED: Leadership in energy and environmental design

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  1. LEED:Leadership in energy and environmental design GibbsINTD 153 Design Studio I

  2. Topics • Why Green Design in Interior Design? • Typical Client Motivations • What is LEED? • The LEED Rating System

  3. Why Green Design in Interior Design? • Buildings consume 37% of total energy and 68% of the electricity consumed in the U.S. • Each day 5 billion gallons of potable water is used to flush toilets • Typical construction project generates 2.5 pounds of waste per square foot of floor space • Quality of Life improvements for building inhabitants • Client requests

  4. Typical Client Motivations • Attitudes: • Care about the environment • $$ Goals: • Reduce operating costs • Save on Energy, water, waste • Enhance Building Marketability • Other Goals: • Increase worker productivity (Production gains up to 16%) • Reduce absenteeism because of “Sick building syndrome” • Reduce liability / Increase loyalty

  5. What is LEED? • A way to define and measure “green buildings” • A rating system developed by the U.S. Green Building Council • Categorized into building/project types • New Construction • Existing Buildings • Commercial Interiors • Core and Shell • LEED for Homes • Neighborhood Development

  6. LEED Rating System • Seven Categories with slightly different requirements • Point allocation based on project type/ rating system: • Sustainable Sites • Water Efficiency • Energy and Atmosphere • Materials and Resources • Indoor Environmental Quality • Innovation and Design

  7. Why Green Design in Interior Design? • In all categories there are Prerequisites that must be met • Following slides based on Major Renovation Projects rating system

  8. Point Allocations: Water Efficiency • Did You Know? • Everyday ¼ of nations total supply of water is used with 65% discharged treated or untreated in rivers, streams and lakes. • U.S. extracts 3,700 billon gallons from the aquifer more than they return. • LEED Water Efficiency Points earned for: • Water efficient Landscaping • Minimizing or utilizing Wastewater • Other water efficient features • Low-flow shower heads

  9. Water Use Reduction

  10. Point Allocations: Energy and Atmosphere • Did You Know? • In 2000 the American Lung Association ranked Sacramento 11th worst for air pollution in American cities. • Children in the Sacramento Valley will be exposed to the EPA’s lifetime acceptable exposure level for cancer causing toxic air contaminants by the time they are 23 years old • LEED Energy and Atmosphere Points earned for: • Building Commissioning • Energy Performance • Renewable Energy • Daylighting • Refrigerant Management

  11. Materials & Resources • Did You Know? • The most sustainable thing we can do is not build since a typical 1,700 square foot wood framed home requires the equivalent of clear cutting one acre of forest • “Reuse of existing buildings is one of the most effective strategies for minimizing environmental impacts” since it adds less garbage to landfills • Construction and demolition waste streams constitute 40% of total waste in U.S • Use of local reused material reduces transportation waste

  12. Point Allocations: Materials & Resources • LEED Materials and Resources Points earned for: • Storage & Collection of Recyclables • Construction Waste Management, Divert 50% from Disposal • Reusing Existing Materials • Choosing Materials with a minimum 10% Recycled Content • Choosing Materials with a minimum 10% Local Content • Choosing Rapidly Renewing Materials • Choosing FSC Certified Wood

  13. Point Allocations: Indoor Environment • Did You Know? • Americans spend 90% of their time indoors • EPA reports that interior pollutants are 2-5 times greater than outdoor • LEED Indoor Environmental Quality Points earned for: • Increased Ventilation • Low emitting materials • Controllability of Systems • Thermal Comfort

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