同心管换热器
传热
机械
材料科学
板翅式换热器
管壳式换热器
努塞尔数
计算流体力学
动态刮削表面换热器
微型热交换器
热交换器
板式换热器
强化传热
NTU法
热力学
机械工程
传热系数
雷诺数
工程类
湍流
物理
临界热流密度
作者
Lei Chen,Hongxin Zhang,Song Huang,Jianjun Li
标识
DOI:10.1080/15567036.2022.2105989
摘要
Distributed pulsating flow planar tube bundle heat exchanger (DPFPTB-HE) can improve heat transfer and have a high prospect of application in the industry. Computational fluid dynamics (CFD) software Fluent was utilized as an analysis tool, and the factors affecting heat transfer in heat exchangers were comprehensively studied based on the theory of fluid mechanics and heat transfer in this article. The local average surface Nusselt number(Nuv) evaluated the heat transfer performance. Results found that the DPFPTB-HE proposed in this paper has more uniform distribution of cold fluid in the shell domain and higher heat transfer efficiency in each layer of the tube bundle compared with the conventional planar tube bundle heat exchanger (PTB-HE). In this paper’s single-factor analysis experimental session, the study showed that with the inlet velocity increases, Nuv increases; as the length of the branch pipe increases, Nuv decreases; branch pipe diameter increases, Nuv decreases. The results obtained Nuv by applying the optimal experimental parameters selected by the Taguchi method were 7.22% larger than the maximum value in the control group. The numerical result and methodology are beneficial for providing further insight into guiding the optimization of heat exchanger structure and promoting industrial progress.
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