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Numerical simulations of two-dimensional wet foam by the immersed boundary method

机译:浸没边界法对二维湿泡沫的数值模拟

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In this paper, we present an immersed boundary (IB) method to simulate a 2 dimensional wet foam. Whereas most of the volume in a dry foam is attributed to its gas phase, a wet foam contains a considerable amount of liquid volume which comprises the Plateau borders as well as thin liquid boundaries separating cells. Wet foam dynamics involves the interaction between a surrounding gas, a liquid inside the Plateau borders, and a collection of thin liquid-film boundaries that partition a domain filled with gas and liquid into discrete cells and Plateau borders. The liquid-film boundaries are flexible, contract under the influence of surface tension. The boundary between cells is permeable to the gas, which moves across them by diffusion at a rate proportional to the local pressure difference across the boundary. The boundary between a cell and a Plateau border is impermeable to the gas, however. We here introduce an IB method that takes into account the non-equilibrium fluid mechanics of the fluid. To model gas diffusion across the internal boundaries between cells, we allow normal slip between the boundary and the gas at velocity proportional to the (normal) force generated by the boundary surface tension. We implement this method in the two-dimensional case, and test it by verifying the modified von-Neumann relation, which governs the coarsening of a two-dimensional wet foam. The method is further validated by a convergence study, which confirms its first-order accuracy.
机译:在本文中,我们提出了一种浸入边界(IB)方法来模拟二维湿泡沫。尽管干泡沫中的大部分体积都归因于其气相,但湿泡沫包含大量的液体体积,这些液体体积包括高原边界以及分隔细胞的稀薄液体边界。湿泡沫动力学涉及周围气体,高原边界内的液体与薄液膜边界的集合之间的相互作用,该薄液膜边界将充满气体和液体的区域划分为离散的单元格和高原边界。液膜边界是柔性的,在表面张力的影响下收缩。细胞之间的边界是气体可渗透的,气体通过扩散以与跨边界的局部压力差成比例的速率跨过它们移动。然而,细胞与高原边界之间的边界是气体不可渗透的。我们在此介绍一种考虑了流体的非平衡流体力学的IB方法。为了模拟气体在细胞间内部边界上的扩散,我们允许边界和气体之间的法向滑动以与边界表面张力产生的(法向)力成比例的速度进行。我们在二维情况下实施此方法,并通过验证修正的von-Neumann关系进行测试,该关系控制二维湿泡沫的粗化。收敛性研究进一步验证了该方法,证实了其一阶准确性。

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