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An efficient diffusion model for viscous fingering

机译:粘性指法的有效扩散模型

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Viscous fingering is one of the most important factors to produce realistic diffusion among two miscible fluids with differing viscosities. Diffusion-limited Aggregation (DLA) has been a popular choice for the synthesis of the viscous fingering effect. However, as DLA provides a mere description of aggregation process, it is not clear how to apply the DLA model into conventional 3D fluid simulation equations. The DLA model first generates a shape description of the viscous fingering effect. The shape description is changed to a fluid flow region by the application of dilation and erosion operators. The flow region is then filled with the directions which will guide the fluid motion in a simulation. The directions are converted into a form of external force by means of a linear feedback system. Our results show that the DLA model can generate the viscous fingering effect effectively in a single phase simulation without relying on a high resolution grid. Our method is semi-physical due to the employment of DLA and is easy to implement, as the underlying concept is simple. Computational overhead is also negligible from the conventional fluid simulation.
机译:粘性指法是在两种粘度不同的混溶流体之间产生实际扩散的最重要因素之一。扩散限制聚集(DLA)已成为合成粘性指法效果的一种流行选择。但是,由于DLA仅提供了聚集过程的描述,因此尚不清楚如何将DLA模型应用于常规3D流体模拟方程式。 DLA模型首先生成粘性指法效果的形状描述。通过使用膨胀和腐蚀算子,将形状描述更改为流体流动区域。然后在流动区域中填充将指导模拟中流体运动的方向。方向通过线性反馈系统转换为外力形式。我们的结果表明,DLA模型可以在单相模拟中有效地产生粘性指弹效果,而无需依赖高分辨率网格。由于采用了DLA,我们的方法是半物理的,并且易于执行,因为其基本概念很简单。从常规流体模拟中,计算开销也可以忽略不计。

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