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Numerical simulation of flow distribution in the header of plate-fin heat exchanger

机译:板式换热器集管流量分布的数值模拟

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Plate-fin heat exchangers are widely used in industry at present due to their compact structure and high efficiency. However, there is a problem of flow maldistribution, resulting in poor performance of heat exchangers. The influence of the header configuration on fluid flow distribution is studied by using CFD software FLUENT. The numerical results show that the fluid flow inside the header is seriously uneven. The reliability of the numerical simulation is validated against the published results. They are found to be basically consistent within considerable error. The optimal number of the punch baffle is investigated. Various header configuration with different opening ratios have been studied under the same boundary conditions. The gross flow maldistribution parameter (S) is used to evaluate flow nonuniformity, and the flow maldistribution parameters of different schemes under different Reynolds numbers are listed and compared. The optimal header with minimum flow maldistribution parameter is obtained through the performance analysis of headers. It is found that the flow maldistribution of the improved header is significantly smaller compared with the conventional header. Hence, the efficiency of the heat exchanger is effectively enhanced. The conclusion provides a reference for the optimization design of plate-fin heat exchanger.
机译:由于结构紧凑和高效率,板式翅片热交换器广泛用于工业中。然而,存在流动恶性的问题,导致热交换器的性能差。通过使用CFD软件流畅研究了头部配置对流体流分布的影响。数值结果表明,标题内的流体流动严重不均匀。数值模拟的可靠性针对已发布的结果验证。它们被发现基本上在相当大的错误中一致。研究了打孔挡板的最佳数量。在相同的边界条件下已经研究了具有不同开口比的各种标题配置。总流量的恶性分布参数用于评估流动不均匀性,并且列出并比较了不同雷诺数下不同方案的流量不分布参数。具有最小流动发生命令参数的最佳报头是通过标题的性能分析获得的。结果发现,与传统的报头相比,改进的报头的流量缩小明显较小。因此,热交换器的效率得到有效增强。该结论为板式换热器优化设计提供了参考。

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