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首页> 外文期刊>Case Studies in Thermal Engineering >An approximate model of a multilayer wire-on-tube condenser operating with R134a and R600a: Experimental validation and parametric analysis
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An approximate model of a multilayer wire-on-tube condenser operating with R134a and R600a: Experimental validation and parametric analysis

机译:用R134A和R600A运行的多层线管冷凝器的近似模型:实验验证和参数分析

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This study presents the development of a new approximate model for a multilayer wire-on-tube condenser used in the domestic refrigeration industry. This model is based on physical foundations and empirical correlations, as well as on the ε-NTU thermal analysis methodology. It has been designed for three zones according to the state of the refrigerant. The input parameters to the model correspond to typical geometric characteristics of this type of condenser and operating conditions. As output parameters, the emphasis was placed on the thermal capacity of the condenser, and the refrigerant side and air-side outlet temperatures. For its validation, tests were carried out with real refrigerators, one of them operating with R134a and the other with R600a. The model prediction showed maximum relative errors of ±5% for thermal capacity and ±0.5K for temperatures. Finally, a parametric study was carried out analyzing the effect of varying the main geometric parameters such as tube and wire diameters, and wire and tube pitches.
机译:本研究介绍了国内制冷工业中使用的多层线管冷凝器的新近似模型的开发。该模型基于物理基础和经验相关性,以及ε-NTU热分析方法。它根据制冷剂的状态设计了三个区域。模型的输入参数对应于这种类型的电容器和操作条件的典型几何特性。作为输出参数,重点放置在冷凝器的热容量上,以及制冷剂侧和空气侧出口温度。对于其验证,用真正的冰箱进行测试,其中一个与R134a和其他带有R600a一起操作的。模型预测显示热容量的最大相对误差为±5%,温度为±0.5k。最后,进行了参数研究,分析了改变主要几何参数,例如管和线径,以及电线和管间距的效果。

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