Page 78 - Defrosting for Air Source Heat Pump
P. 78

Uneven defrosting on the outdoor coil in an ASHP                   69

           References


            [1] Qu ML, Xia L, Deng SM, Jiang YQ. Improved indoor thermal comfort during defrost
               with a novel reverse cycle defrosting method for air source heat pumps. Build Environ
               2010;45(11):2354–61.
            [2] Qu ML, Xia L, Jiang YQ, Deng SM. A study of the reverse cycle defrosting performance
               on a multi-circuit outdoor coil unit in an air source heat pump-part I: experiments. Appl
               Energy 2012;91:122–9.
            [3] Wang ZY, Wang XM, Dong ZM. Defrost improvement by heat pump refrigerant charge
               compensating. Appl Energy 2008;85(11):1050–9.
            [4] Payne V, O’Neal DL. Defrost cycle performance for an air-source heat pump with a scroll
               and a reciprocating compressor. Int J Refrig 1995;18(2):107–12.
            [5] Ashiqur Rahman M, Jacobi AM. Drainage of frost melt water from vertical brass surfaces
               with parallel microgrooves. Int J Heat Mass Transf 2012;55(5–6):1596–605.
            [6] 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(1):177–86.
            [7] 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(10):
               1915–30.
            [8] Huang D, Li QX, Yuan XL. Comparison between hot-gas bypass defrosting and reverse-
               cycle defrosting methods on an air-to-water heat pump. Appl Energy 2009;86(9):
               1697–703.
            [9] Hu WJ, Jiang YQ, Qu ML, Yao Y, Deng SM. An experimental study on the operating
               performance of a novel reverse-cycle hot gas defrosting method for air source heat pumps.
               Appl Therm Eng 2011;31(2–3):363–9.
           [10] Wang DY, Tao TF, Xu GH, Luo AL, Kang SY. Experimental study on frosting suppres-
               sion for a finned-tube evaporator using ultrasonic vibration. Exp Therm Fluid Sci
               2012;36:1–11.
           [11] O’Neal DL, Peterson K, Anand NK, Schliesing JS. Refrigeration system dynamics during
               the reverse cycle defrost. ASHRAE Trans 1989;95(2):689–98.
   73   74   75   76   77   78   79   80   81   82   83