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首页> 外文期刊>Journal of Chemical Engineering of Japan >Immersed Boundary Method with Artificial Density in Pressure Equation for Modeling Flows Confined by Wall Boundaries
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Immersed Boundary Method with Artificial Density in Pressure Equation for Modeling Flows Confined by Wall Boundaries

机译:压力方程中具有人工密度的浸入边界方法,用于建模壁边界限制的流动

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The immersed boundary (IB) method is a promising technique for the numerical simulation of complex microchannel flows. However, numerical tests revealed a loss of wall impermeability for certain flow cases leading to unphysical results when using a standard IB method. To solve this problem, we propose a novel artificial density technique incorporated in the pressure solution for IB methods. The pressure equation is modified by scaled density coefficients in IB domains, which reflects the effect the boundary screening. The proposed model is as simple and efficient as the original IB method, and it can eliminate the spurious velocity penetration. Numerical results are shown to justify this method. Its application to a branched microchannel is also presented in the last part of this study.
机译:浸入边界(IB)方法是一种用于复杂微通道流动数值模拟的有前途的技术。但是,数值测试显示,在使用标准IB方法时,某些流动情况下壁的不渗透性会损失,从而导致非物理结果。为了解决这个问题,我们提出了一种新的人工密度技术,该技术结合到了IB方法的压力解决方案中。压力方程由IB域中的缩放密度系数修改,这反映了边界筛选的效果。该模型与原始IB方法一样简单有效,并且可以消除杂散速度穿透。数值结果证明了该方法的合理性。本研究的最后一部分还介绍了其在分支微通道中的应用。

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