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首页> 外文期刊>Journal of Fluid Mechanics >MIXED CONVECTION DUE TO A FINITE HORIZONTAL FLAT PLATE EMBEDDED IN A POROUS MEDIUM
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MIXED CONVECTION DUE TO A FINITE HORIZONTAL FLAT PLATE EMBEDDED IN A POROUS MEDIUM

机译:多孔介质中埋入的有限水平平板使对流混合

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Simultaneous steady forced and free convective flow past a heated or cooled body in a semi-infinite porous medium subject to the Darcy-Boussinesq approximation is treated analytically and numerically. A correction term is derived in terms of the Rayleigh (Ra) and Peclet (Pe) numbers for the velocity and temperature fields far from the body; this is subsequently implemented in a numerical treatment, using finite-difference techniques in elliptical coordinates, for 1 less than or equal to Pe less than or equal to 100 and Ra less than or equal to 10(3). Flow separation is observed for both heating and cooling, perhaps surprisingly so for the former case since the flow near the plate is being accelerated by comparison with the forced convection case. A simple analogy with inviscid flow theory serves to illustrate the manner in which separation eddies are formed for both heating and cooling cases. [References: 31]
机译:在一个半无限多孔介质中,通过Darcy-Boussinesq逼近,同时经过加热或冷却的物体,同时进行稳定的强迫和自由对流流动。根据远离身体的速度场和温度场的瑞利(Ra)和佩克雷(Pe)数得出校正项;随后在椭圆坐标系中使用有限差分技术在数值处理中实现,对于小于或等于Pe的1小于或等于100且 Ra 小于或等于10(3)。对于加热和冷却均观察到流动分离,对于前一种情况可能令人惊讶,因为与强制对流情况相比,靠近板的流动正在加速。与无粘性流动理论的简单类比用于说明在加热和冷却情况下形成分离涡流的方式。 [参考:31]

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