1. 安徽工业大学建筑工程学院,安徽 马鞍山 2430322. 安徽置地投资有限公司,安徽 安庆 246000
收稿日期:
2018-10-30修回日期:
2019-01-02出版日期:
2019-08-22发布日期:
2019-08-15通讯作者:
鲁进利基金资助:
基于CFD-DPM相变微胶囊液固两相流时空分布及对流传热特性;低阻高效微尺度换热器对流传热特性研究Experimental test on heat exchanger performance of air conditioning with microchannel evaporator
Jinli LU1*, Yajin LIU1, Yafang HAN1, Bangjie CHI2, Fuping QIAN11. School of Civil Engineering and Architecture, Anhui University of Technology, Ma'anshan, Anhui 243032, China2. Anhui Land Investment Co., Ltd., Anqing, Anhui 246000, China
Received:
2018-10-30Revised:
2019-01-02Online:
2019-08-22Published:
2019-08-15Contact:
LU Jin-li 摘要/Abstract
摘要: 设计并搭建了柜式空调用微通道蒸发器的性能实验测试平台,测试了微通道蒸发器扁管进出口端温度分布及蒸发器进出口温差、压差、输入功率、制冷量和系统能效比随环境舱温度(18~23℃)升高的变化,并与常规管翅式蒸发器进行了对比。结果表明,微通道蒸发器具有较好的制冷剂流量分配特性,提高了空调出风口温度分布均匀性;由于微通道蒸发器制冷剂充注量低于管翅式蒸发器,且流程也相对缩短,相同工况下,微通道蒸发器进出口压差比管翅式蒸发器降低了33.9%,输入功率降低了4.12%,制冷量提升了2.95%,系统能效比最高提高了6.69%。
引用本文
鲁进利 刘亚进 韩亚芳 池帮杰 钱付平. 柜式空调微通道蒸发器换热性能测试[J]. 过程工程学报, 2019, 19(4): 661-667.
Jinli LU Yajin LIU Yafang HAN Bangjie CHI Fuping QIAN. Experimental test on heat exchanger performance of air conditioning with microchannel evaporator[J]. Chin. J. Process Eng., 2019, 19(4): 661-667.
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