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Numerical simulation of heat transfer in the near-wall region of tubular reactors packed with metal open-cell foams

机译:装有金属开孔泡沫的管式反应器近壁区域传热的数值模拟

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摘要

A numerical investigation of the thermal transport processes in the near-wall region of a reactor packed with metal open-cell foams is presented in view of the development of externally-cooled tubular reactors packed with catalytically active foams. Two different aluminium open-cell foams were scanned by X-ray micro-computed tomography in order to generate the 3D models used in this study. The conjugated solid-fluid heat transfer problem is solved by finite volume analysis (FVA) for different flow rates and fluid properties (Peclet number range from 1 to 105). Predictive correlations for the wall heat transfer coefficient are derived according to different thermal coupling scenarios between the open-cell foam bed and the reactor wall. Such kind of systematic study and the proposed correlations that account for the gap size represent a novelty in the field of published literature on open-cell foams. (C) 2014 Elsevier B.V. All rights reserved.
机译:考虑到填充有催化活性泡沫的外部冷却管式反应器的发展,对填充有金属开孔泡沫的反应器的近壁区域中的热传输过程进行了数值研究。 X射线微计算机断层扫描技术扫描了两种不同的铝开孔泡沫,以生成本研究中使用的3D模型。共轭固体-流体传热问题通过有限体积分析(FVA)解决了不同的流速和流体特性(Peclet数范围为1至105)。根据开孔泡沫床和反应器壁之间的不同热耦合情况,得出壁传热系数的预测相关性。这种系统的研究和提出的解释间隙大小的相关性代表了有关开孔泡沫的已发表文献领域的新颖性。 (C)2014 Elsevier B.V.保留所有权利。

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