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Incompressible LBGK simulation of flow characteristics in a micro-channel with patterned superhydrophobic surfaces

机译:具有图案化的超疏水表面的微通道流动特性的不可压缩LBGK模拟

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Characteristics of flow in a micro-channel with patterned superhydrophobic surfaces were simulated by using an incompressible lattice Bhatnagar-Gross-Krook (LBGK) model. By the simulation, it can be seen that the depth-to-width ratio of the cavities between adjacent micro-ridges is an important effect parameter for the flow in the micro-channel. For the larger depth-to- width ratio, it is easy to keep the air in the cavities. Because of the influence of the air, there is no vortex phenomenon downstream of each micro-ridge. Such vortices are a common phenomenon in macro flows. The simulated results coincide with those of experiments. Moreover, keeping the air in the cavities, one can also find that the smaller the solid area fraction, the greater the slipping velocity at the air-water interface. With a decrease of the solid area fractions, the average exit velocity increases and the flow drag coefficient decreases.
机译:使用不可压缩的格子Bhatnagar-Gross-Krook(LBGK)模型模拟​​了具有图案化超疏水表面的微通道中的流动特性。通过仿真可以看出,相邻微脊之间的腔的深宽比是微通道中流动的重要影响参数。对于较大的深宽比,很容易将空气保留在型腔中。由于空气的影响,每个微脊的下游都没有涡旋现象。这种旋涡是宏观流动中的普遍现象。仿真结果与实验结果吻合。而且,将空气保持在空腔中,还可以发现,固体面积分数越小,在空气-水界面处的滑动速度越大。随着固体面积分数的减少,平均出口速度增加,流阻系数减小。

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