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Experimental determination of the heat transfer coefficient in shell-and-tube condensers using the Wilson plot method

机译:威尔逊图法实验确定管壳式冷凝器的传热系数

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This article deals with the experimental determination of heat transfer coefficients. The calculation of heat transfer coefficients constitutes a crucial issue in design and sizing of heat exchangers. The Wilson plot method and its modifications based on measured experimental data utilization provide an appropriate tool for the analysis of convection heat transfer processes and the determination of convection coefficients in complex cases. A modification of the Wilson plot method for shell-and-tube condensers is proposed. The original Wilson plot method considers a constant value of thermal resistance on the condensation side. The heat transfer coefficient on the cooling side is determined based on the change in thermal resistance for different conditions (fluid velocity and temperature). The modification is based on the validation of the Nusselt theory for calculating the heat transfer coefficient on the condensation side. A change of thermal resistance on the condensation side is expected and the value is part of the calculation. It is possible to improve the determination accuracy of the criterion equation for calculation of the heat transfer coefficient using the proposed modification. The criterion equation proposed by this modification for the tested shell-and-tube condenser achieves good agreement with the experimental results and also with commonly used theoretical methods.
机译:本文讨论了传热系数的实验确定。传热系数的计算是热交换器设计和尺寸确定的关键问题。威尔逊图法及其基于实测实验数据利用的改进,为分析对流传热过程和确定复杂情况下的对流系数提供了一个合适的工具。提出了管壳式冷凝器的Wilson图方法的一种改进。原始的Wilson图方法考虑了冷凝侧的恒定热阻值。根据不同条件(流体速度和温度)的热阻变化确定冷却侧的传热系数。修改是基于Nusselt理论的验证,用于计算冷凝侧的传热系数。预计冷凝侧的热阻会发生变化,该值是计算的一部分。使用所提出的修改可以提高用于计算传热系数的标准方程式的确定精度。通过这种修改为测试的管壳式冷凝器提出的标准方程与实验结果以及常用的理论方法都取得了很好的一致性。

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