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A Deformable Surface Model for Real-Time Water Drop Animation

机译:实时水滴动画的可变形曲面模型

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A water drop behaves differently from a large water body because of its strong viscosity and surface tension under the small scale. Surface tension causes the motion of a water drop to be largely determined by its boundary surface. Meanwhile, viscosity makes the interior of a water drop less relevant to its motion, as the smooth velocity field can be well approximated by an interpolation of the velocity on the boundary. Consequently, we propose a fast deformable surface model to realistically animate water drops and their flowing behaviors on solid surfaces. Our system efficiently simulates water drop motions in a Lagrangian fashion, by reducing 3D fluid dynamics over the whole liquid volume to a deformable surface model. In each time step, the model uses an implicit mean curvature flow operator to produce surface tension effects, a contact angle operator to change droplet shapes on solid surfaces, and a set of mesh connectivity updates to handle topological changes and improve mesh quality over time. Our numerical experiments demonstrate a variety of physically plausible water drop phenomena at a real-time rate, including capillary waves when water drops collide, pinch-off of water jets, and droplets flowing over solid materials. The whole system performs orders-of-magnitude faster than existing simulation approaches that generate comparable water drop effects.
机译:由于水滴在小规模下具有很强的粘性和表面张力,因此其水滴的行为与大水滴不同。表面张力使水滴的运动很大程度上取决于其边界表面。同时,粘度使水滴的内部与其运动无关,因为可以通过边界上速度的插值很好地逼近平滑速度场。因此,我们提出了一个快速变形的表面模型,以逼真的为水滴及其在实体表面上的流动行为设置动画。我们的系统通过将整个液体体积上的3D流体动力学减小到可变形的表面模型,以拉格朗日方式有效地模拟了水滴运动。在每个时间步中,模型都使用隐式平均曲率流动算子产生表面张力效应,使用接触角算子改变固体表面上的液滴形状,并使用一组网格连接更新来处理拓扑变化并随时间改善网格质量。我们的数值实验以实时的速度证明了各种物理上合理的水滴现象,包括水滴碰撞时的毛细波,水针的夹断以及水滴在固体材料上的流动。整个系统比产生可比的水滴效果的现有仿真方法快几个数量级。

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