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Campus Energy Use Intelligent Infrastructure for Energy Efficiency

Campus Energy Use Intelligent Infrastructure for Energy Efficiency. May 25, 2007 Peter Cooper Dept of Facilities, Manager of Sustainable Engineering and Utility Planning. BUILDINGS. CUP. HEAT COOLING LIGHTING FANS/PUMPS PLUG LOADS. STEAM. OIL. GAS. CHILLED WATER . ELECTRICITY.

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Campus Energy Use Intelligent Infrastructure for Energy Efficiency

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  1. Campus Energy UseIntelligent Infrastructure for Energy Efficiency May 25, 2007 Peter Cooper Dept of Facilities, Manager of Sustainable Engineering and Utility Planning

  2. BUILDINGS CUP HEAT COOLING LIGHTING FANS/PUMPS PLUG LOADS STEAM OIL GAS CHILLED WATER ELECTRICITY ELECTRICITY WATER ENERGY FLOW TO BUILDINGS HEAT COOLING LIGHTING FANS/PPS PLUG LOADS OIL GAS ELECTRICITY

  3. District Steam System

  4. Chilled Water

  5. Campus Electrical

  6. ENERGY DATA FY2006

  7. We Are Here 118,000 Ton Reduction Needed for 2005 Levels Our Greenhouse Gas Profile 1990-2020 • A GHG Inventory shows our emissions come from: • Building energy consumption 90% • Transportation (including commuting) 9.5% • Solid waste 0.5% • We can reduce our emission to 2005 levels (or better) through several key strategies: Renewable power offers additional reductions • A revolving loan fund • Energy conservation • Co-generation expansion • Sustainable design • Renewable power • Grants for student research 8

  8. Cogen Energy Flow

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