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In-line tube-bank heat exchangers: Arrays with various numbers of thermally participating tubes

机译:直列式管束式换热器:具有各种热参与管的阵列

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摘要

This investigation presents numerical results for both laminar and turbulent flow and heat transfer for an in-line tube bank ranging in size from 1 to 20 tube rows over a Reynolds number range of 100-1000. Both the longitudinal and transverse pitches were fixed at 1.5D. It was demonstrated that the most useful heat transfer results were expressible as a total-tube-bank-averaged Nusselt number value, which is in contradiction to other investigations. For sufficiently lengthy tube banks, the existence of a fully developed regime characterized by an axially unchanging array-average Nusselt number was identified. It was found that the highest array-average heat transfer coefficients occurred in the initial portion of the tube bank, also in contradiction with information conveyed in some of the literature. A special case in which only a single tube in the array was thermally active was investigated in deference to experiments conducted under that condition. The present results obtained by numerical simulation compared favorably to existing experimental data. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究给出了在100-1000雷诺数范围内的直列式管束的层流和湍流以及传热的数值结果,这些管束的尺寸为1至20行。纵向和横向间距均固定为1.5D。结果表明,最有用的传热结果可以表示为总管束平均Nusselt值,这与其他研究相矛盾。对于足够长的管束,确定存在以轴向不变的阵列平均努塞尔数为特征的充分发展的状态。发现最高的平均阵列传热系数出现在管束的初始部分,这也与某些文献中所传达的信息相矛盾。参照在该条件下进行的实验,研究了一种特殊情况,在该情况下,阵列中的单个管仅具有热活性。通过数值模拟获得的当前结果与现有的实验数据相比具有优势。 (C)2018 Elsevier Ltd.保留所有权利。

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