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Simulation and analytical validation of forced convection inside open cell metal foams

机译:开孔金属泡沫内部强制对流的模拟和分析验证

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摘要

Two ideal three-dimensional geometries are generated using cylinder-joint and sphere-subtraction methods, respectively. The former is firstly used to establish simple geometrical relations among average pore diameter, strut diameter, ligament diameter, porosity, and specific surface area. An analytical model of heat transfer in a foamed heat exchanger is then proposed using the transfer matrix method and one-equation model. The heat transfer predictions have been compared with available experimental data and favorable agreements have been obtained. Heat transfer coefficient and pressure drop in both two geometries with different porosities and cell dimensions are investigated using COMSOL Multiphysics. Pressure drop verifications among numerical results, semi-empirical models, and experimental data show good feasibility of Kelvin structure. The proposed Kelvin geometric model is shown to be self-consistency with respect to both its geometrical characteristics and thermal properties, which can be adopted for finer details of pressure drop phenomenon. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:分别使用圆柱关节和球面减法生成两个理想的三维几何。首先使用前者在平均孔径,支杆直径,韧带直径,孔隙率和比表面积之间建立简单的几何关系。然后,采用传递矩阵法和一方程模型,提出了泡沫换热器传热的解析模型。将传热预测与可用的实验数据进行了比较,并获得了有利的协议。使用COMSOL Multiphysics研究了两种具有不同孔隙率和孔尺寸的几何形状的传​​热系数和压降。数值结果,半经验模型和实验数据之间的压降验证表明,开尔文结构具有很好的可行性。所提出的开尔文几何模型在其几何特性和热特性方面均表现出自洽性,可用于压降现象的更精细细节。 (C)2016 Elsevier Masson SAS。版权所有。

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