西安交通大学能源与动力工程学院,西安,710049
网络首发:2008-09-10,
纸质出版:2008
移动端阅览
黄东, 李权旭, 吴蓓, 等. 流路布置对热泵空调中冷凝和蒸发两用换热器性能的影响[J]. 西安交通大学学报, 2008,42(9):1107-1112.
Effect of Refrigerant Circuitry on Indoor Coil Serving as Condenser and Evaporator in Heat Pump[J]. 2008, 42(9): 1107-1112.
研究了顺交叉、逆交叉和NU型三种流路布置对R22热泵空调中冷凝和蒸发两用换热器性能的影响规律.结果表明:作为蒸发器时
NU型的换热量最大
比逆交叉和顺交叉的换热量分别增加了1.5%和3.25%; 作为冷凝器时
顺交叉的换热量最大
分别比逆交叉和NU型的换热量增加了7.4%和1.28%; 依据蒸发器和冷凝器的换热量之和比较
NU型的最大
顺交叉的次之
逆交叉的最小.因此
NU型是使制冷循环和制热循环效率较高的流路布置.
The effects of three refrigerant circuitries on the indoor coil in a split-type air-source heat pump using R22 were investigated numerically by EVAP-COND 2.0. The results show that both the air-and-refrigerant temperature difference and overall heat transfer coefficient change with the space location. Moreover
the evaporator capacity with NU-shape arrangement is 1.5% and 3.25% more than that with counter and parallel arrangements
respectively. Furthermore
the condenser capacity with parallel arrangement is 7.4% and 1.28% more than that with counter and NU-shape arrangements
respectively. From the sum of condenser capacity and evaporator capacity
it seems that the NU-shape arrangement might be the reasonable one for indoor coil with higher energy efficiency in both cooling cycle and heating cycle.
DOMANSKI P A, YASHAR D, KIM M S. Performance of a finned-tube evaporator optimized for different refrigerants and its effect on system efficiency [J]. International Journal of Refrigerant, 2005, 28(6): 820-827.
LIANG S Y, WONG T N, NATHAN G K. Numerical and experimental studies of refrigerant circuitry of evaporator coils [J]. International Journal of Refrigerant, 2001, 24(8): 823-833.
LIANG S Y, WONG T N, NATHAN G K. Study on refrigerant circuitry of condenser coils with exergy destruction analysis [J]. Applied Thermal Engineering, 2000, 20(6): 559-577.
WANG Chichuan, LIU Minsheng, LEU J S. Influence of circuitry arrangement on the pressure drops of two-row finned tube evaporators [J]. ASME Journal of Energy Resources Technology, 2001,123(1): 100-103.
WANG Chichuan, JANG J Y, LAI C C, et al. Effect of circuit arrangement on the performance of air-cooled condensers [J]. International Journal of Refrigerant,1999, 22(4): 275-282.
DOMANSKI P A. Simulation models for finned-tube evaporator and condenser-EVAP-COND 2.1 [CP/DK].Gaithersburg, USA: National Institute of Standards and Technology,[2006-08-12].http:∥www2.bfrl.nist.gov/softuare/evdp-COND.
DOMANSKI P A. Simulation of an evaporator with non-uniform one-dimensional air distribution [J]. ASHRAE Transaction, 1991, 97(1): 793-802.
DOMANSKI P A. Finned-tube evaporator model with a visual interface [C]∥ 20th International Congress of Refrigeration. Sydney,Australia: International Institute of Refrigeration, 1999: 1-7.
WANG Chichuan, CHIK Y, CHANG C J. Heat transfer and friction characteristics of plain fin-and-tube heat exchangers: correlation [J]. International Journal of Heat Mass Transfer, 2000, 43(15): 2693-2700.
THOME J R. Update on advances in flow pattern based two-phase heat transfer models [J]. Experimental Thermal and Fluid Science, 2005, 29(3): 341-349.
SHAH M M. General correlation for heat transfer during film condensation inside pipes [J]. International Journal of Heat and Mass Transfer, 1979, 22(4):547-556.
ASHRAE. ASHRAE handbook: fundamentals volume [M]. Atlanta,USA: American Society of Heating, Refrigerating and Air Conditioning Engineers,2001: 3-14.
MÜLLER-STEINHAGEN H, HECK H K. A simple friction pressure drop correlation for two-phase flow in pipes [J]. Chemical Engineering Process, 1986, 20(6): 297-308.
CHISHOLM D. Two-phase flow in pipelines and heat exchangers[M]. London,UK: George Godwin, 1983: 304-305.
IDELCHIK I E. Handbook of hydraulic resistance [M].2nd ed. New York,USA: Hemisphere, 1986: 640-641.
黄东,陈群,袁秀玲.支路数对热泵空调中冷凝和蒸发两用换热器性能的影响[J]. 西安交通大学学报, 2007,41(5): 543-548.
HUANG Dong, CHENG Qun, YUAN Xiuling. Effect of circuit number on the indoor coil serving as both condenser and evaporator in heat pump [J].Journal of Xi'an Jiaotong University, 2007,41(5): 543-548.
0
浏览量
4
下载量
12
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621