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Heat transfer from a 2D backward facing step with isotropic porous floor segments

机译:来自各向同性多孔底板的2D向后步骤的传热

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The incompressible laminar (ReH = l00) reattaching flow over a 2D backward facing step with porous floor segments of different lengths was solved numerically using the finite element method. The focus of this study was the change in the forced convection heat transfer characteristics of the flow field due to the addition of porous floor segments. Several isotropic porous floor segment configurations with different lengths and depths were studied. The porosity of the segments was varied over a wide range by changing the value of the pressure loss coefficient (KP = l0~-2-l0~6). The changes in the local and overall Nusselt number are reported and discussed. Depending on the configuration, axial variation of the local Nusselt number could be altered. For all configurations, the overall Nusselt number decreased by as much as l6/100 while the maximum local Nusselt number increased by as much as 170/100, both relative to their respective values for the reference case of a solid floor.
机译:使用有限元方法用数值方法解决了二维反面台阶上的不可压缩层流(ReH = 100),该台阶具有不同长度的多孔底板段,并且在二维反面台阶上进行了求解。这项研究的重点是由于增加了多孔底板部分而改变了流场的强制对流传热特性。研究了几种不同长度和深度的各向同性多孔地板段构型。通过改变压力损失系数的值(KP = 10〜-2-10〜6),可在很大范围内改变各段的孔隙率。报告并讨论了局部和整体Nusselt数的变化。根据配置,可以更改局部Nusselt数的轴向变化。对于所有配置,总Nusselt数最多减少16/100,而最大本地Nusselt数最多增加170/100,两者均相对于实心地板参考案例的相应值。

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