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Heat Transfer Analysis of Conventional Round Tube and Microchannel Condensers in Automotive Air Conditioning System

机译:汽车空调系统中常规圆管和微通道冷凝器的传热分析

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In this paper, an experimental analysis of conventional air cooled round tube and microchannel condensers in an automotive air conditioning cycle in term of heat transfer coefficient and energy is presented. The analysis was carried out in a test unit of automotive air conditioning system works with R134a. The conventional round tube plate fin condenser, and cycle were examined first. After that the conventional condenser is replaced by a parallel flow multi-louvered fin microchannel condenser with 0.1 mm hydraulic diameter, and the same experiments in same conditions have been re-implemented. The performance of two condenser and cycles were tested in terms of ambient temperature, which it was varied from 40 o C to 65 o C. Besides, the indoor temperature and load has been set to 23 o C and 2200 W respectively. It was found that replacing the round tube conventional condenser with a microchannel is useful and can enhances the total cycle performance. Because, the microchannel condenser has 224 % and 77 % higher refrigerant side and air side heat transfer coefficient than the conventional. So that, the COP, in case of using the microchannel condenser, was found to be 20 % higher than the conventional. In addition, the microchannel condenser 50 % smaller volume than the conventional. Therefore, it provides more empty space in the car engine container to be occupied with other components or to be removed.
机译:本文从传热系数和能量的角度对汽车空调循环中传统的空冷圆管和微通道冷凝器进行了实验分析。该分析是在与R134a一起工作的汽车空调系统测试单元中进行的。首先检查了常规的圆管板翅式冷凝器和循环。此后,将传统冷凝器替换为水力直径为0.1 mm的平行流多百叶窗翅片微通道冷凝器,并且在相同条件下重新进行了相同的实验。根据环境温度对两个冷凝器和循环的性能进行了测试,环境温度从40 o C变为65 oC。此外,室内温度和负载分别设置为23 o C和2200W。已经发现,用微通道代替常规的圆管冷凝器是有用的,并且可以提高总循环性能。因为,微通道冷凝器的制冷剂侧和空气侧的传热系数比常规的高224%和77%。因此,在使用微通道冷凝器的情况下,发现COP比常规方法高20%。此外,微通道冷凝器的体积比常规冷凝器小50%。因此,其在汽车发动机容器中提供了更多的空余空间,以被其他部件占据或被移除。

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