西安交通大学能源与动力工程学院,西安,710049
网络首发:2010-07-10,
纸质出版:2010
移动端阅览
黄东, 贾杰楠. 室外换热器流路布置对热泵空调器的性能影响分析[J]. 西安交通大学学报, 2010,44(7):33-37.
Effect of Refrigerant Circuit Arrangement of Outdoor Heat Exchanger on Performance of Heat Pump Air Conditioner[J]. 2010, 44(7): 33-37.
在压缩机、毛细管、室内换热器及室外换热器的几何结构尺寸均相同的情况下
对室外换热器的流路布置进行了优化.实验结果表明:室外换热器作冷凝器时采用逆交叉流
作蒸发器时采用顺交叉流
这样能够提高换热器和热泵系统的性能
使得热泵空调的制冷和制热循环压缩机功率分别降低3.81%和5.46%
制冷量和制热量分别增加2.73%和2.78%
使制冷能效比EER提升6.82%
制热能效比COP提升8.73%.数值比较结果表明:优化后的流路布置可增大换热器各支路后半部分的传热温差和传热系数
从而提高了换热器的性能.
The refrigerant circuit arrangement of an outdoor heat exchanger was optimized for a heat pump air conditioner when the compressor
capillary tube
indoor heat exchanger
and the geometric parameters of the outdoor heat exchanger were unchanged. The experimental results of the air conditioner with the outdoor heat exchanger optimized were compared with those of the primary heat pump air conditioner. The results show that the performances of both the outdoor heat exchanger and the heat pump increased when the outdoor heat exchanger had the counter cross-flow arrangement serving as a condenser and the parallel cross-flow serving as an evaporator. The compressor power input with the optimized outdoor circuit arrangement in the cooling and heating cycles decreased by 3.81% and 5.46%
respectively. Moreover
the cooling and heating capacities increased by 2.73% and 2.78%
respectively. Hence
the EER in the cooling cycle and the COP in the heating cycle increased by 6.82% and 8.73%
respectively. The numerical simulation results indicate that the capacity improvement of the optimized outdoor heat exchanger is attributed to the increase of both the heat transfer coefficient and the air-and-refrigerant temperature difference at the second half of each circuit.
姜盈霓, 虎小红. 流程布置对翅片管换热器换热性能影响的研究现状与展望 [J].制冷与空调, 2007,7(3):14-20.
JIANG Yingni, HU Xiaohong. Prospect and research status of the effect of circuit arrangement on the heat exchanger performance of finned tube exchanger [J]. Refrigeration and Air-Conditioning, 2007,7(3):14-20.
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.
张智, 金培耕, 涂旺荣,等.制冷剂流路对冷凝器换热特性的影响 [J]. 暖通空调, 2002, 32(5):61-63.
ZHANG Zhi, JIN Peigeng, TU Wangrong,et al. Effect of circuit arrangement on the heat exchange performance of air-cooled condensers[J]. Heat Ventilating Air Conditioning, 2002,32(5):61-63.
饶荣水, 魏富党. 翅片管换热器过冷管设计对系统性能影响研究 [J].制冷, 2009,28(1):36-40.
RAO Rongshui, WEI Fudang. Investigation on the subcooled U tube design of a fin-tube heat exchanger on the performance of the air conditioner [J]. Refrigeration, 2009,28(1):36-40.
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.
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.
HUANG Dong, LI Quanxu, WU Bei, et al. Effect of refrigerant circuitry on indoor coil serving as condenser and evaporator in heat pump [J]. Journal of Xi'an Jiaotong University, 2008,42(9):1107-1112.
徐志亮, 严玉雄. 焓差法试验室调试常见问题分析 [J]. 制冷与空调, 2007,7(3):66-70.
XU Zhiliang, YAN Yuxiong. Analysis of common problem for the enthalpy test method laboratory [J]. Refrigeration and Air-Conditioning, 2007,7(3):66-70.
DOMANSKI P A. Simulation models for finned-tube evaporator and condenser-EVAP-COND 21 [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.
0
浏览量
4
下载量
6
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621