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Innovative Energy Systems Workshop

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Innovative Energy Systems Workshop ( innovative-energy-systems-workshop )

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• Attractive SWAC sites have been identified, especially on Oahu, where 50,000 tons are realistic: o West Coast – very near to deep cold water o Honolulu – requires longer cooling pipes, but a dense collection of large cooling demand o Kakaako – new development, large demand, few key decision-makers (however, 4+ miles to 500 m deep water, but can be supplemented with chillers and Thermal Energy Storage. • SWAC can be developed within Hawaii now and can be an export technology for Hawaii. Cornell Lake Source Cooling Project W. S. (Lanny) Joyce, Manager of Engineering, Planning and Energy Management – Cornell University Mr. Joyce provided an overview of the Cornell University’s Lake Source Cooling (LSC) project, including the project’s history, installation, challenges, and success. (Additional detail can be found at the website: http://www.utilities.cornell.edu.) • Reasons to employ LSC at Cornell o 40,000 lbs of CFC eliminated or recycled o energy efficiency (over 80% energy savings) o decreased reliance on fossil fuels (reduce pollution, acid rain, global warming) o cost-effective over the long-term ($58 million in capital for a 20,000 ton LSC system, 10 to 13 year payback) o community benefits • Existing campus cooling infrastructure prior to the LSC project included: o an 18,000 ton DC system o 3 chilled water plants with 8 large electric centrifugal chillers o a 4.5 million gallon chilled water TES tank o chilled water supply and return (CHWS/R) tempos of 45/60 oF • LSC system facts and figures: o Relatively nearby access to the deep cold water of Cayuga Lake (one of the Finger Lakes of upstate New York) o Offshore pipe – HDPE, 63 inch diameter, 10,400 long, 250 ft deep (39 to 40 oF water temp) o HX station – producing 45 oF CHWS for campus (in architecturally attractive building at the lake shore) o Onshore CHWS/R transmission piping – 12,000 ft long (3,000 ft in a city street), rising to 450 ft elevation above the lake o New CHWS/R headers on campus – 42, 36 and 24 inch diameters, direct- buried, un-insulated, carbon steel with HDPE outer coating (for corrosion protection), connecting at 5 points to the existing 11-mile campus DC piping network 9

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