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首页> 外文期刊>Journal of Computational Physics >An accurate adaptive solver for surface-tension-driven interfacial flows
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An accurate adaptive solver for surface-tension-driven interfacial flows

机译:用于表面张力驱动的界面流的精确自适应求解器

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摘要

A method combining an adaptive quad/octree spatial discretisation, geometrical Volume-Of-Fluid interface representation, balanced-force continuum-surface-force surface-tension formulation and height-function curvature estimation is presented. The extension of these methods to the quad/octree discretisation allows adaptive variable resolution along the interface and is described in detail. The method is shown to recover exact equilibrium (to machine accuracy) between surface-tension and pressure gradient in the case of a stationary droplet, irrespective of viscosity and spatial resolution. Accurate solutions are obtained for the classical test case of capillary wave oscillations. An application to the capillary breakup of a jet of water in air further illustrates the accuracy and efficiency of the method. The source code of the implementation is freely available as part of the Gerris flow solver.
机译:提出了一种结合自适应四叉树/八叉树空间离散化,几何流体体积界面表示,平衡力连续体表面力表面张力公式化和高度函数曲率估计的方法。将这些方法扩展到四叉树/八叉树离散化可以沿界面进行自适应变量解析,并进行了详细说明。结果表明,在固定液滴的情况下,该方法可恢复表面张力和压力梯度之间的精确平衡(以达到机器精度),而与粘度和空间分辨率无关。对于毛细波振荡的经典测试案例,可以获得准确的解决方案。在空气中水射流的毛细管破裂中的应用进一步说明了该方法的准确性和效率。该实现的源代码可作为Gerris流求解器的一部分免费提供。

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