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Physics-Based Fluid-Solid Interaction of Ocean Simulation Using SPH

机译:基于物理的基于SPH的海洋模拟流固耦合

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Realistic simulation of natural scene has always been a hot and difficult problem in the field of computer graphics, the simulation of dynamic fluid is particularly prominent. Ocean is a representative, it plays a key role in the field of virtual reality. In the research of ocean simulation based on physics, the details are not enough and the fluid-solid interaction authenticity is poor. Therefore, the fluid-solid interaction simulation of ocean simulation is important. In this paper, we propose a fluid-solid simulation method, a two-way interaction simulation between solid model and fluid particles based on control points. Smoothed Particle Hydrodynamics (SPH) algorithm based fluid simulation is realized and B-spline function is chosen as the kernel function through the comparative analysis of Gauss kernel function, B-spline kernel function and Quintic spline kernel function. In view of the low efficiency in the process of the fluid surface reconstruction problem, we put forward a method to limit the extraction process on the surface of the fluid. We improve the boundary movement and add some random parameter values based on the direct rebound method, cut speed in a certain degree and implement a more realistic boundary movement effect. Experiment results show the simulation effects of this method.
机译:自然界的现实模拟在计算机图形学领域始终是一个热闹而困难的问题,动态流体的仿真尤为突出。海洋是一个代表,它在虚拟现实领域发挥着关键作用。在基于物理学的海洋仿真研究中,细节不够,并且流体固体相互作用真实性差。因此,海洋模拟的流体固体相互作用模拟很重要。本文提出了一种流体固体仿真方法,基于控制点的固体模型与流体颗粒之间的双向相互作用模拟。基于平滑的粒子流体动力学(SPH)基于流体仿真,通过高斯内核功能,B样条内核函数和Quintic样条内核功能,选择了B样函数作为内核功能。鉴于流体表面重建问题的过程的低效率,我们提出了一种将提取过程限制在流体表面上的方法。我们改善了边界运动,基于直接反弹方法添加了一些随机参数值,在一定程度上切换速度并实现了更现实的边界运动效果。实验结果显示了这种方法的模拟效果。

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