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The hybrid method applied to the plate-finned tube evaporator geometry

机译:施加在板翅管蒸发器几何形状的混合方法

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A procedure for the design and rating of plate-finned tube evaporator is proposed, to overcome limitations of both numerical and experiment based available present methods. The hybrid method allows to achieve high accuracy without incurring excessive computational cost and provides overall performance predictions starting from local analyses. The domain is divided into control volumes, where heat transfer is modeled by means of predictor equations obtained by known data. An iterative analytical method is used to find at each control volume the convergence between the heat transfer rates on both sides, and to obtain the distribution of wall temperature in the heat exchanger and the spatial distribution of the air mass flow rate. A case study is shown where in the first row the refrigerant completely evaporates, while this doesn't happen for the last one where the vapor quality at the outlet is 28% lower. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:提出了一种设计和等级的板翅管蒸发器的过程,以克服基于现有方法的数值和实验的限制。 混合方法允许实现高精度,而不会产生过度计算成本,并提供从本地分析开始的整体性能预测。 该域被分为控制体积,其中通过通过已知数据获得的预测标准方程来建模传热。 一种迭代分析方法用于在每个控制体积上找到两侧传热速率之间的收敛,并在热交换器中获得壁温分布和空气质量流量的空间分布。 显示了制冷剂完全蒸发的第一行中的案例研究,而这不会发生在出口处的蒸汽质量下降28%的最后一个。 (c)2017年Elsevier Ltd和IIR。 版权所有。

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