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Lis, D., R. Faesy, G. Stebbins, B. McCowan, V. Eacert, A. Parlikar. 2017. NYSERDA Ductless Mini-Split Heat Pump (DMSHP) Market Characterization Study Final Report. New York: NYSERDA. Nadel, S. and C. Kallakuri. 2016. Opportunities for Energy and Economic Savings by Replacing Electric Resistance Heat with Higher Efficiency Heat Pumps. Washington, DC: ACEEE. NEEP (Northeast Energy Efficiency Partners). 2017. Cold Climate Air-Source Heat Pump Specification. Boston: NEEP. www.neep.org/initiatives/high-efficiency-products/emerging- technologies/ashp/cold-climate-air-source-heat-pump/. Nelson, A. A. Nagarajan, K. Prabakar, V. Gevorgian, B. Lundstrom, S. Nepal, A. Hoke, M. Asano, R. Ueda, J. Shindo, K. Kubojiri, R. Ceria, and E. Ifuku. 2016. Inverter Grid Support Function Laboratory Validation and Analysis. Honolulu: Hawaiian Electric Company. NYSERDA (New York State Energy Research Development Authority). 2017. Renewable Heating and Cooling Policy Framework. Albany, NY: NYSERDA. Ryan, D., R. Long, D. Lauf, M. Ledbetter, and A. Reeves. 2010 ENERGY STAR Water Heater Market Profile: Efficiency Sells. Washington, DC: US DOE. The Verge. 2018. “ARM unveils two new AI chip designs to ride the machine learning wave.” https://www.theverge.com/2018/2/13/17007174/ai-chip-designs-arm-machine-learning- object-detection Westphalen, D., K. Roth, and J. Brodrick. 2006. Heat Transfer Enhancement. ASHRAE Journal, 48(4), 68-71. ©2018 ACEEE Summer Study on Energy Efficiency in Buildings 1-13PDF Image | Lync Diagram
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CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info
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