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Published byBret Forrest Modified over 9 years ago
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Nathan Lammers – Waibel Evan Nutt – Waibel Mike Kennedy - Heapy
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Introductions – Sustainability / Energy Building Overview Technologies Tour Energy Conversion Calculation
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Nathan Lammers ◦ Waibel Energy Systems ◦ Client & Energy Services Evan Nutt ◦ Waibel Energy Systems ◦ Trane HVAC Equipment Mike Kennedy ◦ Heapy Engineering ◦ Design and Energy Modeling
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216,500 ft 2 Technologies ◦ Solar PV ◦ Solar Thermal ◦ Wind Turbine ◦ Rain Water Harvesting ◦ High Efficiency HVAC with Ice Storage ◦ Solar Shades ◦ Metering Distinctions ◦ US Department of Education Green Ribbon ◦ USGBC LEED Gold ◦ Featured in 2 National Magazines
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Benefits ◦ Renewable, Feeds Domestic Hot Water Process ◦ Sun Rays, Cold Water In – (HX) – Hot Water Tank ◦ Two Water Loops – 1 Glycol, 1 Preheat for DHW Total Impact ◦ Reduces fossil fuel heating (non-renewable)
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Background ◦ Types of Water Rain – Storm – Grey – Black - Non-Potable - Potable
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LEED Credit Benefits – ◦ Reduce Transport of DCW– Great Miami Aquifer ◦ Reduce Rainwater Pollution ◦ Reduce Potable Water for Flushing and Returned Wastewater Filtration reduces the amount of sediment and other pollutants. Process/Distribution Synergistic Effect/Total Impact
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Onsite Collection ◦ – 75kgal Reservoir
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http://10.134.3.10/buildingworx http://10.134.3.10/buildingworx
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Kinetic Energy in Wind Electrical Energy
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Available Kinetic Energy = ½ mV 2 Available Kinetic Power = ½ pAV 3 ◦ p = Density = 1.23 kg/m 3 ◦ A = Area Swept by blades Radius of blade = 4.25 m ◦ V = 11 m/s Calculate Kinetic Power of Wind Turbine 46,449 Watts
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Find Actual Output of Wind Turbine at 11 m/s (Approximate) 12,324 W
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Calculate Efficiency of Power Conversion of Wind Turbine Eff = 12,324 / 46,449 Eff = 26.5%
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