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NUSSELT NUMBER PREDICTION FOR SLIP FLOW IN CONFINED POROUS MEDIA BASED ON LATTICE BOLTZMANN METHOD

机译:基于格子Boltzmann方法的密闭多孔介质滑动流数值预测

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Understanding flow and heat transfer in porous media is a matter of prime concern for micro devices. In this work, slip flow and heat transfer of gaseous fluid through the confined porous media is numerically simulated using a multiple-relaxation-time lattice Boltzmann method. The method is employed using an effective curved boundary treatment based on non-equilibrium extrapolation and counter-extrapolation methods. Nusselt number prediction for varying porosity, Knudsen and Reynolds number are studied. Based on the obtained numerical results, it is proved that the current technique can be used to effectively model slip flow and heat transfer at pore-scale. Lattice Boltzmann method; Slip flow; Heat transfer; Curved boundary; Porous medium
机译:对于微器件而言,了解多孔介质中的流动和传热是首要考虑的问题。在这项工作中,使用多重松弛时间格玻尔兹曼方法对通过受限多孔介质的气态流体的滑流和传热进行了数值模拟。通过基于非平衡外推和反外推方法的有效弯曲边界处理来使用该方法。研究了不同孔隙度的努塞尔数预测,克努森数和雷诺数。基于获得的数值结果,证明了当前技术可用于有效地模拟滑流和孔尺度的传热。格子波尔兹曼法滑流传播热量;弯曲的边界;多孔介质

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