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Investigation of heat transfer in spacer-filled channels by experiments and direct numerical simulations

机译:通过实验和直接数值模拟研究填充垫片通道中的传热

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摘要

The analysis of flow fields and heat or mass transfer phenomena is of great importance in the optimum design of spacer-filled channel geometries for a variety of membrane-based processes. In the present work, models of spacer-filled channels often adopted in Membrane Distillation are simultaneously investigated by experiments and Computational Fluid Dynamics (CFD). Experiments rely on a non-intrusive technique, based on the use of Thermochromic Liquid Crystals (TLC) and digital image processing, and provide the local distribution of the convective heat transfer coefficient on a thermally active wall. CFD relies on steady-state (laminar flow) simulations in the lower end of the Reynolds number range investigated and on direct numerical simulations in the upper end of this range. This latter is a region of great practical interest for real applications, in which the flow is chaotic but not fully turbulent, and neither steady-state simulations nor the use of turbulence models would provide satisfactory predictions. Results are reported and discussed for a specific spacer geometry (overlapped orthogonal cylindrical filaments) and different spacer orientations with respect to the main flow. To the authors' knowledge, this is the first study in which an experimental validation of computational results concerning local heat or mass transfer is performed for spacer-filled channels.
机译:对于各种基于膜的工艺,在隔板填充通道几何形状的优化设计中,流场和传热或传质现象的分析非常重要。在目前的工作中,通过实验和计算流体动力学(CFD)同时研究了膜蒸馏中经常采用的填充垫片的通道模型。基于热致变色液晶(TLC)的使用和数字图像处理,实验依赖于一种非侵入性技术,并在热活性壁上提供对流传热系数的局部分布。 CFD依赖于所研究的雷诺数范围下限的稳态(层流)模拟,以及该范围上限的直接数值模拟。对于实际应用而言,后一个区域具有很大的实际意义,在该区域中,流动是混乱的,但不是完全湍流的,稳态仿真和湍流模型的使用都不能提供令人满意的预测。报告并讨论了特定隔圈的几何形状(重叠的正交圆柱丝)和相对于主流的不同隔圈方向的结果。据作者所知,这是第一项针对隔板填充通道进行有关局部传热或传质的计算结果的实验​​验证的研究。

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