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Synthetic turbulence using artificial boundary layers

机译:人造边界层的合成湍流

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Turbulent vortices in fluid flows are crucial for a visually interesting appearance. Although there has been a significant amount of work on turbulence in graphics recently, these algorithms rely on the underlying simulation to resolve the flow around objects. We build upon work from classical fluid mechanics to design an algorithm that allows us to accurately precompute the turbulence being generated around an object immersed in a flow. This is made possible by modeling turbulence formation based on an averaged flow field, and relying on universal laws describing the flow near a wall. We precompute the confined vorticity in the boundary layer around an object, and simulate the boundary layer separation during a fluid simulation. Then, a turbulence model is used to identify areas where this separated layer will transition into actual turbulence. We sample these regions with vortex particles, and simulate the further dynamics of the vortices based on these particles. We will show how our methodcomplements previous work on synthetic turbulence, and yields physically plausible results. In addition, we demonstrate that our method can efficiently compute turbulent flows around a variety of objects including cars, whisks, as well as boulders in a river flow. We can even apply our model to precomputed static flow fields, yielding turbulent dynamics without a costly simulation.
机译:流体流动中的湍流涡流对于视觉上有趣的外观至关重要。虽然最近在图形中有大量的湍流工作,但这些算法依赖于潜在的模拟来解决对象周围的流量。我们在古典流体力学工作中建立工作以设计一种算法,该算法允许我们准确地将围绕流动浸入的物体产生的湍流进行精确地强化。这是通过基于平均流场建模湍流形成,并依赖于描述墙壁附近流动的普遍规律来实现。我们将围绕物体周围的边界层中的狭窄涡度预编译,并在流体模拟期间模拟边界层分离。然后,使用湍流模型来识别该分离层将转变为实际湍流的区域。我们用涡流粒子对这些区域进行采样,并根据这些颗粒模拟涡流的进一步动态。我们将展示我们的方法支持如何以前的合成湍流工作,并产生身体合理的结果。此外,我们证明我们的方法可以有效地计算各种物体周围的湍流流,包括汽车,威空,以及河流中的巨石。我们甚至可以将模型应用于预先计算的静态流场,而不会昂贵的仿真而产生湍流动态。

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