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Experimental and simulation study on the air side thermal hydraulic performance of automotive heat exchangers

机译:汽车热交换器空气侧热工水力性能的实验与仿真研究

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Flat tube heat exchangers with louvered fins were applied in order to meet the performance requirements and compactness in automotive air conditioning systems. Experimental and simulation study focusing on the air side thermal hydraulic performance of automotive heat exchangers were performed in this article. Test results showed that the heat capacity of a condenser with 5.4 mm height louvered fins can be 3.0%-8.6% higher than the 8 mm fin height condenser of the same size. Automotive evaporator can have 9.3% volume reduction by using short louvered fins while retain the same cooling capacity. Distributed parameter models were developed for automotive heat exchangers and effectiveness NTU method was used to calculate the heat capacity. The models were validated by comparing the results to those calculated via Coil Designer 3.6. Verification has been done for several well-known correlations used for the calculation of thermal hydraulic performance of wet and dry louvered surfaces. The correlations were evaluated by comparing calculations with test data of 24 different specimens under typical automotive heat exchanger working conditions. It was concluded, that the existing correlations can give satisfactory predictions for heat capacity of condensers and evaporators, and air side pressure loss of condenser. However, further study on the friction characteristic of wet louvered fins is still needed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了满足汽车空调系统的性能要求和紧凑性,使用了带有百叶窗翅片的扁平管式热交换器。本文进行了针对汽车热交换器空气侧热工水力性能的实验和模拟研究。测试结果表明,具有5.4毫米高度百叶窗式翅片的冷凝器的热容量可以比相同尺寸的8毫米翅片高度冷凝器高3.0%-8.6%。通过使用短百叶窗式散热片,汽车蒸发器可以减少9.3%的体积,同时保持相同的冷却能力。针对汽车热交换器开发了分布式参数模型,并使用有效性NTU方法计算了热容量。通过将结果与通过Coil Designer 3.6计算的结果进行比较来验证模型。已经对用于计算干湿百叶窗表面的热水力性能的几种众所周知的相关性进行了验证。通过将计算结果与典型汽车热交换器工作条件下的24个不同样品的测试数据进行比较,来评估相关性。结论是,现有的相关性可以对冷凝器和蒸发器的热容量以及冷凝器的空气侧压力损失给出令人满意的预测。但是,仍然需要进一步研究湿百叶窗翅片的摩擦特性。 (C)2015 Elsevier Ltd.保留所有权利。

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