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Thermal-hydraulic characteristics and performance of 3D straight channel based printed circuit heat exchanger

机译:基于3D直通道的印刷电路换热器的热工液压特性和性能

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CFD study is done to propose an efficient PCHE (Printed Circuit Heat Exchanger) model; used as a recuperator in International Thermonuclear Experimental Reactor (ITER). 3D steady-state conjugate heat-transfer simulations are done with helium as a working fluid and alloy 617 as the solid substrate. Effect of variation of thermo-physical properties, operating conditions and three different design modifications are studied. Thermal hydraulic performance is found better for single as compared to double banking and is the same for aligned as compared to the staggered arrangement of the hot and cold channels. PCHE models with hemispherical dimples are found to give better thermal hydraulic performance. The performance is presented for the variation of the heat transfer density (for a PCHE model) and the pressure drop (in the hot and cold channel). Various types of flow patterns are presented to analyze the thermal-hydraulic characteristics - leading to the heat transfer enhancement by the dimples. (C) 2015 Elsevier Ltd. All rights reserved.
机译:进行了CFD研究以提出一种有效的PCHE(印刷电路换热器)模型;在国际热核实验反应堆(ITER)中用作换热器。 3D稳态共轭传热模拟是使用氦作为工作流体,合金617作为固体基质完成的。研究了热物理性质,操作条件和三种不同设计修改的影响。与双排相比,单排的热工水力性能更好,与冷热通道的交错布置相比,对齐的热工水力性能相同。发现具有半球形凹痕的PCHE模型可提供更好的热液压性能。表现出的是传热密度(对于PCHE模型)和压降(在热通道和冷通道中)变化的性能。提出了各种类型的流动模式来分析热工液压特性-导致酒窝提高了热传递。 (C)2015 Elsevier Ltd.保留所有权利。

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