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Effect of inlet flow maldistribution on the passage arrangement design of multi-stream plate-fin heat exchanger

机译:入口流量分布不均对多流板翅式换热器通道布置设计的影响

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Inlet flow maldistribution has deteriorative influence on the thermal performance of multi-stream plate fin heat exchanger, which affects the design of passage arrangement. In this paper, the optimization design of passage arrangement considering inlet flow maldistribution is investigated. A thermal model based on integral mean temperature difference is developed for evaluating the coupling effects of inlet flow distribution and passage arrangement on the total heat transfer rate of multi-stream plate-fin heat exchanger, the model is validated with +/- 6.71% root-mean-square errors of heat transfer rate under uniform flow with 20 groups of simulation data of Aspen Plate Fin Exchanger (Single)(R). Then three representative one-dimensional inlet mass flow distributions are adopted to characterize the inlet flow maldistribution. Passage arrangement under these flow maldistributions are optimized using hybrid particle swarm algorithm. By carrying out the optimization, the total heat transfer rate increased 2.50% and 4.52% under different inlet flow maldistributions of Flow A; and increased by 2.58-3.98% under different inlet flow maldistributions of Flow A of Flow B simultaneously. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进气流量分布不均会对多流板翅式换热器的热性能产生不利影响,影响通道布置的设计。本文研究了考虑进气流量分配不均的通道布置的优化设计。建立了基于积分平均温差的热模型,以评估入口流分布和通道布置对多流板翅式换热器总传热率的耦合效应,该模型的根为+/- 6.71% 20组Aspen板式翅片换热器(Single)(R)的模拟数据在均匀流动下的传热速率均方误差。然后采用三个代表性的一维入口质量流量分布来表征入口流量分布不均。使用混合粒子群算法对这些流量分布不均下的通道安排进行了优化。通过进行优化,在流量A不同入口流量分布不均的情况下,总传热率分别提高了2.50%和4.52%。在流量B的流量A的不同入口流量分布不均的同时增加了2.58-3.98%。 (C)2016 Elsevier Ltd.保留所有权利。

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