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Efficient and Effective Algorithms for Controllable Fluid Simulation and Mesh Deformation

机译:可控流体模拟和网格变形的高效有效算法

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摘要

During the past decade, due to rapidly growing computational power, complicated numerical algorithms have become popular in graphics community which greatly improved the quality of graphics imagery. On the other hand, to produce high-quality visual effects, the size of the data being processed has also increased drastically at the same time. Thus efficient algorithms are desired in many applications. This dissertation focuses on problems in controlling fluid simulations and mesh deformations. It has potential applications in film and game industries.The first part of this dissertation includes efficient algorithms for controlling the motion of gas and liquid. The efficiency is achieved by using feedback forces to drive the fluid toward the target. Without expensive optimization procedures, the control algorithms produce desired and natural results that only incur an additional computational cost linear to the size of the problem. Controlling the motion of lightweight natural objects in a gaseous medium is also studied, using data-driven synthesis based on stylistic motion planning and nonlinear optimization based on smoothed particle hydrodynamics. In addition, we also introduce a simple algorithm to perform plausible fluid simulation over triangle meshes.
机译:在过去的十年中,由于计算能力的快速增长,复杂的数值算法在图形社区中变得很流行,极大地提高了图形图像的质量。另一方面,为了产生高质量的视觉效果,正在处理的数据的大小同时也急剧增加。因此,在许多应用中需要有效的算法。本文主要研究控制流体模拟和网格变形的问题。它在电影和游戏产业中具有潜在的应用。本文的第一部分包括控制气体和液体运动的有效算法。通过使用反馈力将流体驱向目标,可以实现效率。如果没有昂贵的优化程序,控制算法将产生所需的自然结果,仅会产生与问题大小成线性关系的额外计算成本。还研究了如何控制轻质自然物体在气态介质中的运动,它使用了基于样式运动计划的数据驱动合成和基于平滑粒子流体动力学的非线性优化。此外,我们还介绍了一种简单的算法,可以对三角形网格进行合理的流体模拟。

著录项

  • 作者

    Shi Lin;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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