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首页> 外文期刊>IEEE transactions on visualization and computer graphics >Vortical Inviscid Flows with Two-Way Solid-Fluid Coupling
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Vortical Inviscid Flows with Two-Way Solid-Fluid Coupling

机译:双向固液耦合的涡流无粘性

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Vortex methods increasingly receive attention from the computer graphics community for simple and direct modeling of complex flow phenomena such as turbulence. The coupling between free-form solids, represented by arbitrary surface meshes, and fluids simulated with vortex methods, leads to visually rich simulations. In this paper, we introduce a novel approach for simulating the interaction between solids and inviscid fluids for high-quality simulations using Lagrangian vortex particles. The key aspect of our method is simulating the creation of vorticity at a solid's surface. While previous vortex simulators only focus on modeling the solid as a boundary for the fluid, our approach allows the accurate simulation of two processes of visual interest. The first is the introduction of surface vorticity in the main flow as turbulence (vortex shedding). The second is the motion of the solid induced by fluid forces. We also introduce to computer graphics the concept of source panels to model nonturbulent flow around objects. To the best of our knowledge, this is the first work on two-way coupling of 3D solids and fluids using Lagrangian vortex methods in computer graphics.
机译:涡流方法越来越受到计算机图形学界的关注,用于对湍流等复杂流动现象的简单直接建模。用任意表面网格表示的自由形式固体与用涡旋方法模拟的流体之间的耦合导致了视觉上丰富的模拟。在本文中,我们引入了一种新颖的方法来模拟固体和不粘流体之间的相互作用,从而利用拉格朗日涡旋粒子进行高质量的模拟。我们方法的关键方面是模拟固体表面的涡度的产生。尽管以前的涡流模拟器只专注于将固体建模为流体的边界,但我们的方法可以对视觉上感兴趣的两个过程进行精确的模拟。首先是在主流中以湍流(涡流脱落)引入表面涡旋。第二个是由流体力引起的固体运动。我们还将计算机图形学引入源面板的概念,以模拟对象周围的非湍流。据我们所知,这是在计算机图形学中使用拉格朗日涡旋方法对3D固体和流体进行双向耦合的第一项工作。

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