A study of the reverse cycle defrosting performance on a multi-circuit outdoor coil unit in an air source heat pump – Part I: Experiments
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Minglu Qu | Liang Xia | Shiming Deng | Yiqiang Jiang | S. Deng | Yiqiang Jiang | L. Xia | Minglu Qu | M. Qu
[1] Shiming Deng,et al. A study on the performance of the airside heat exchanger under frosting in an air source heat pump water heater/chiller unit , 2004 .
[2] D. O’Neal,et al. Frost/defrost performance of a three-row fin staged heat pump evaporator. , 2002 .
[3] Xian-min Guo,et al. Dynamic defrosting characteristics of air source heat pump and effects of outdoor air parameters on defrost cycle performance , 2009 .
[4] Curtis F. Gerald. Applied numerical analysis , 1970 .
[5] Xian-min Guo,et al. Experimental study on frost growth and dynamic performance of air source heat pump system , 2008 .
[6] Predrag Stojan Hrnjak,et al. Frost, defrost, and refrost and its impact on the air-side thermal-hydraulic performance of louvered-fin, flat-tube heat exchangers , 2006 .
[7] Yi Jiang,et al. Experiment investigation of reverse cycle defrosting methods on air source heat pump with TXV as the throttle regulator , 2004 .
[8] J. J. Lux,et al. Energy considerations in hot-gas defrosting of industrial refrigeration coils , 1983 .
[9] K. C. Cheng,et al. Freezing And Melting Heat Transfer In Engineering: Selected Topics On Ice-Water Systems And Welding And Casting Processes , 1991 .
[10] Dong Huang,et al. Dynamic characteristics of an air-to-water heat pump under frosting/defrosting conditions , 2007 .
[11] W. A. Miller,et al. Laboratory examination and seasonal analysis of frosting and defrosting for an air-to-air heat pump , 1987 .
[12] Dennis L. O'Neal,et al. Effect of short-tube orifice size on the performance of an air source heat pump during the reverse-cycle defrost , 1991 .
[13] Fu-Yun Zhao,et al. Dynamic simulation of air-source heat pump during hot-gas defrost , 2003 .
[14] Refrigerating. ASHRAE handbook of fundamentals , 1967 .
[15] S. A. Sherif,et al. Electric defrosting analysis of a finned-tube evaporator coil using the enthalpy method , 2002 .
[16] Ralph L. Webb,et al. Investigation of the possibility of frost release from a cold surface , 2001 .
[17] S. A. Sherif,et al. A semi-empirical model for electric defrosting of a cylindrical coil cooler , 1998 .
[18] Douglas T. Reindl,et al. Hot gas defrost model development and validation , 2005 .
[19] Seung-Hwan Yang,et al. Utilization and performance evaluation of a surplus air heat pump system for greenhouse cooling and heating , 2013 .
[20] Shiming Deng,et al. Improved indoor thermal comfort during defrost with a novel reverse-cycle defrosting method for air source heat pumps , 2010 .
[21] Wang Zhiyi,et al. Defrost improvement by heat pump refrigerant charge compensating , 2008 .
[22] José Fernández-Seara,et al. Modelling and experimental validation of the hot-gas defrost process of an air-cooled evaporator , 2010 .
[23] Woo-Seung Kim,et al. Effect of surface treatments on the frosting/defrosting behavior of a fin-tube heat exchanger , 2002 .
[24] Ju-Suk Byun,et al. The application of photo-coupler for frost detecting in an air-source heat pump , 2006 .
[25] Byungsoon Kim,et al. Defrosting method adopting dual hot gas bypass for an air-to-air heat pump , 2011 .
[26] J. W. Ramsey,et al. Thermal Environmental Engineering , 1970 .
[27] Savvas A. Tassou,et al. Effects of evaporator frosting and defrosting on the performance of air-to-water heat pumps , 1987 .
[28] Dennis L. O'Neal,et al. Defrost cycle performance for an air-source heat pump with a scroll and a reciprocating compressor , 1995 .