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Chena Hot Springs

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Chena Hot Springs ( chena-hot-springs )

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Extrapolating collected data to proven performance specifications o f a one megawatt Kaishan Group, direct drive, screw-expander generating system indicates economic, and hence commercial viabilities are attainable. Using a simplified levelized approach methodology and inputting industry standard assumptions, the cost ofproducing power over a twenty year period is under two cents per K-wh. * Given the low development, and capex costs inherent to a mobile, modular generating system, thus significantly lowering the economic access threshold, the applicability for this genre of generating systems should be viewed as broad. Further, within the national and international market-place the low cost to produce power indicates the potential for even broader market acceptance. Goals and Objectives The award was made to provide a demonstrable outcome regarding the technical and commercial viability o f producing power from low temperature, geothermally heated water associated with oil and gas production. • • Technical viability required the synchronous linkage ofgeothermally heated well water to the binary ORC generating system; a portion o f the flow being diverted to the cooling side, while the remainder ofthe flow was directed to the heating side. Technical viability also required the fabrication and development o f relatively small, portable component modules. The generating unit was moved and reassembled at four different locations. Technical viability was successfully attained through all phases of the project. Commercial viability required a comparatively low cost to produce power as measured by industry standard methodology. A simplified levelized cost comparison approach was utilized. Commercial viability also required relatively low development and capital costs. Both measures o f commercial viability indicate probable commercial success. * Project Activities Sequential project activities were: • Complete project plan and schedule; • Develop monitoring plan; • Design modular components; • Fabricate modular components; • Assemble modules; • Test and adjust modules; • Test deployment at Chena Power Facility in Fairbanks, Alaska; Golden Valley Electric Association power grid; • Test deployment at GVEA/ Aurora Energy in Fairbanks, Alaska; Golden Valley Electric Association power grid; • Test deployment at the Peppermill, Reno, Nevada; NV Energy power grid; • Final deployment at New Castle, Utah; Rocky Mountain Power power grid; • Monitor results; • Extrapolate results. *Refer to attachment “A”: Data, Assumptions, Methodology

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