Page 55 - Defrosting for Air Source Heat Pump
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           [128] Ding YJ, Chai QH, Ma GY, Jiang Y. Experimental study of an improved air source heat
                pump. Energ Conver Manage 2004;45:2393–403.
           [129] Wang W, Xiao J, Feng YC, Guo QC, Wang LC. Characteristics of an air source heat
                pump with novel photoelectric sensors during periodic frost-defrost cycles. Appl Therm
                Eng 2013;50:177–86.
           [130] Cho H, Kim Y, Jang I. Performance of a showcase refrigeration system with multi-
                evaporator during on-off cycling and hot-gas bypass defrost. Energy 2005;30:1915–30.
           [131] Huang D, Yuan XL, Zhang XQ. Effects of fan-starting methods on the reverse-cycle
                defrost performance of an air-to-water heat pump. Int J Refrig 2004;27:869–75.
           [132] Huang D, He ZL, Yuan XL. Dynamic characteristics of an air-to-water heat pump under
                frosting/defrosting conditions. Appl Therm Eng 2007;27:1996–2002.
           [133] Dong JK, Jiang YQ, Deng SM, Yao Y, Qu ML. Improving reverse cycle defrosting per-
                formance of air source heat pumps using thermal storage-based refrigerant sub-cooling
                energy. Building Serv Eng Res Technol 2012;33:223–36.
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