Refrigeration
Model Regulation Guidelines for Energy-Efficient and Climate-Friendly Commercial Refrigeration Equipment Supporting Information. Paris: United Nations Environment Programme – United for Efficiency initiative, 2021.
, , , , , , and . Model Regulation Guidelines for Energy-Efficient and Climate-Friendly Commercial Refrigeration Equipment. Paris: United Nations Environment Programme – United for Efficiency initiative, 2021.
, , , , and . Montreal protocol on substances that deplete the ozone layer report of the technology and economic assesment panel volume 4: decision XXXI/7 - continued provision of information on energy-efficient and low-global-warming-potential technologies. Nairobi, Kenya: United Nations Environment Programme, 2021.
, , and . Ensuring the climate benefits of the Montreal Protocol: Global governance architecture for cooling efficiency and alternative refrigerants." Energy Research & Social Science Volume 76 (2021).
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Electricity savings and greenhouse gas emission reductions from global phase-down of hydrofluorocarbons." Atmospheric Chemistry and Physics 20.19 (2020) 11305–11327.
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Energy Efficiency of Refrigeration Systems for High-Heat-Flux Microelectronics." J. Thermal Sci. Eng. Appl 2 (2010) 031004.
, , , , , , , , , and . "Thermal Performance and Key Challenges for Future CPU Cooling Technologies." ASME 2005 Pacific Rim Technical Conference and Exhibition on Integration and Packaging of MEMS, NEMS, and Electronic Systems collocated with the ASME 2005 Heat Transfer Summer Conference. American Society of Mechanical Engineers, 2005. 353–364.
, , , , , , and . "Optimization of Refrigeration Systems for High-Heat-Flux Microelectronics." ASME 2008 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2008.
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