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首页> 外文期刊>Science and Technology for the Built Environment >A discussion about the methodology for validating a model of a finned-tube condenser considering different correlations for the heat transfer coefficients and pressure drop
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A discussion about the methodology for validating a model of a finned-tube condenser considering different correlations for the heat transfer coefficients and pressure drop

机译:考虑传热系数和压降相关性不同的翅片管冷凝器模型验证方法的讨论

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摘要

The selection of suitable correlations for calculating heat transfer coefficients and pressure drop plays a fundamental role in the use of semi-empirical models for the simulation of the performance of a heat exchanger. Therefore, a discussion about the best way for validating a condenser model and choosing the best set of correlations for both the heat transfer coefficients and pressure drop is presented. The studies were performed for both the air and refrigerant side in a round tube and plate fin condenser. A test campaign was specially designed to cover a wide range of key parameters, such as air velocity, condensation temperature, refrigerant mass flow rate, and condenser subcooling. The options for defining the boundary conditions in the model and the accuracy metrics are discussed in detail, allowing the identification of the most suitable correlations. By using this set of correlations, the prediction error is within an error band of +/- 0.4 degrees C for the condensation temperature and +/- 0.6% in terms of capacity.
机译:选择合适的相关性以计算传热系数和压降在使用半经验模型来模拟热交换器性能方面起着至关重要的作用。因此,提出了关于验证冷凝器模型和为传热系数和压降选择最佳相关性的最佳方法的最佳方法的讨论。在圆管和板翅式冷凝器中对空气和制冷剂侧均进行了研究。经过专门设计的测试活动涵盖了广泛的关键参数,例如空气速度,冷凝温度,制冷剂质量流量和冷凝器过冷。详细讨论了在模型中定义边界条件和精度度量的选项,从而可以确定最合适的相关性。通过使用这组相关性,对于冷凝温度,预测误差在+/- 0.4摄氏度的误差带内,在容量方面,预测误差在+/- 0.6%的误差带内。

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