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EFFECT OF POROUS INSERT ON HEAT TRANSFER IN A BACKWARD-FACING STEP FLOW

机译:向后分步流动中多孔插入物对传热的影响

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We present numerical results for turbulent heat transfer past a backward-facing-step channel with a porous insert. A non-linear eddy viscosity model was applied to handle turbulence. For a constant Darcy number, the thickness of the porous insert was varied in order to analyze its effects on the flow pattern, particularly the damping of the recirculating bubble past the insert. Further, the reduction of the Nusselt number along the bottom heated surface, when using porous materials inside the channel, was investigated. The numerical technique employed for discretizing the governing equations was the control-volume method. The SIMPLE algorithm was used to correct the pressure field and the classical wall function approach was utilized in order to handle flow calculations near the wall. Comparisons of results simulated with different porous materials were presented.
机译:我们提出了通过多孔插入件的反向传热通道进行湍流传热的数值结果。应用非线性涡流粘度模型来处理湍流。对于恒定的达西数,改变多孔插入物的厚度以便分析其对流动模式的影响,特别是对经过插入物的再循环气泡的阻尼的影响。此外,当在通道内部使用多孔材料时,研究了沿着底部加热表面的Nusselt数的减少。用于离散控制方程的数值技术是控制量法。 SIMPLE算法用于校正压力场,经典的壁函数方法用于处理壁附近的流量计算。提出了不同多孔材料模拟结果的比较。

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