首页> 外文会议>ASME international heat transfer conference;IHTC14 >LAMINAR HEAT TRANSFER ON A WALL COVERED WITH A LAYER OF POROUS MATERIAL SIMULATED WITH A TWO-ENERGY EQUATION MODEL
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LAMINAR HEAT TRANSFER ON A WALL COVERED WITH A LAYER OF POROUS MATERIAL SIMULATED WITH A TWO-ENERGY EQUATION MODEL

机译:两能方程模型模拟的多孔材料层覆盖壁的层流换热

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This paper presents simulations for a jet impinging against a flat plane covered with a layer of a porous material. Macroscopic equations for mass, momentum and energy, for the fluid and for the porous matrix, are obtained based on the volume-average concept. The numerical technique employed for discretizing the governing equations was the control volume method with a boundary-fitted non-orthogonal coordinate system. The SIMPLE algorithm was used to handle the pressure-velocity coupling. The effect of porosity and energy model on the local distribution of Nu was analyzed. Results indicate that for low porosity materials, a substantially different Nu number is calculated depending on the energy model applied.
机译:本文介绍了冲击覆盖有多孔材料层覆盖的平面的喷射的模拟。基于体积平均概念,获得了物质,动量和能量的宏观方程,用于流体和多孔基质。用于离散化控制方程的使用数值技术是具有边界非正交坐标系的控制体积方法。简单的算法用于处理压力速度耦合。分析了孔隙率和能量模型对Nu局部分布的影响。结果表明,对于低孔隙率材料,根据所施加的能量模型计算基本上不同的NU编号。

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