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In-Depth Analysis of Useful Waste Heat Recovery and Performance of Level 3/3N Systems

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In-Depth Analysis of Useful Waste Heat Recovery and Performance of Level 3/3N Systems ( in-depth-analysis-useful-waste-heat-recovery-and-performance )

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CPUC Self-Generation Incentive Program – Thermal Analysis Report Economic Issues “Spark gap” caused many cogeneration systems to shut down from October 2005 until very recently ES.3 Recommendations Design to Minimum of Electrical and Thermal Loads. Coincident electrical and thermal loads are imperative for successful cogeneration system performance. Without a coincident electric and thermal load, the cogeneration system should be downsized to meet the minimum of the electric or thermal load. This would ensure full-load operation of the cogeneration system. Require Actual Electrical Efficiency. To date, most prime mover efficiency data entries involve a nameplate value that does not adequately account for parasitic loads or part-load operation. Require Documentation for Load Profile and Hours of Operation. Electric and thermal load profiles should be developed as part of the application process. These are key indicators of the success of the cogeneration system but are often times estimated using assumptions and estimates without empirically based documentation. ES-4 Executive Summary

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In-Depth Analysis of Useful Waste Heat Recovery and Performance of Level 3/3N Systems

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