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Research on Air-Side Performance of Automobile Air-Conditioning Parallel Flow Condenser

机译:汽车空调并联流冷凝器的空气侧性能研究

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The authors conduct the experimental study andsimulation for the automobile air conditioning parallel flow condenser, especially study the properties of heat transfer and flow at the side of air when using louver fin. This model used a finite volume method to predict the condenser performance. The properties of air and refrigerant at outlet of each element were determined by the effectiveness-NTU method for a cross-flow condenser. The model was solved by EES which uses the Martin and Hou equation of state to calculate R134a thermodynamic properties. The comparison of experimental data with calculation result shows that the errors are within 5%. The discussion is focused on the influences of different velocity of air and fin's geometry parameters on the parallel condenser. References of the optimum design of the automobile air- conditioning parallel flow condenser are presented.
机译:作者对汽车空调平行流冷凝器进行了实验研究和仿真,特别是研究了使用百叶窗散热片时空气侧的传热和流动特性。该模型使用有限体积方法来预测冷凝器性能。每个元素出口处的空气和制冷剂的特性均通过用于横流式冷凝器的效能-NTU方法确定。该模型由EES求解,该EES使用Martin和Hou状态方程来计算R134a的热力学性质。实验数据与计算结果的比较表明,误差在5%以内。讨论的重点是空气的不同速度和散热片的几何参数对并联冷凝器的影响。介绍了汽车空调平行流冷凝器的优化设计参考。

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