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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Simulation of a flowing snow avalanche using molecular dynamics
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Simulation of a flowing snow avalanche using molecular dynamics

机译:使用分子动力学模拟流动的雪崩

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This paper presents an approach for the modeling and simulation of a flowing snow avalanche, which is formed of dry and liquefied snow that slides down a slope, using molecular dynamics and the discrete element method. A particle system is utilized as a base method for the simulation and marching cubes with real-time shaders are employed for rendering. A uniform grid-based neighbor search algorithm is used for collision detection for interparticle and particle-terrain interactions. A mass-spring model of the collision resolution is employed to mimic the compressibility of the snow and particle attraction forces are put into use between the particles and terrain surface. In order to achieve greater performance, general purpose GPU language and multithreaded programming are utilized for collision detection and resolution. The results are displayed with different combinations of rendering methods for the realistic representation of the flowing avalanche.
机译:本文提出了一种建模和模拟流动雪崩的方法,该雪崩是由干燥的和液化的雪形成的,该雪会滑下斜坡,并利用分子动力学和离散元方法。粒子系统被用作模拟的基本方法,并使用具有实时着色器的立方体进行渲染。基于统一网格的邻居搜索算法用于粒子间相互作用和粒子-地形相互作用的碰撞检测。采用碰撞解析的质量弹簧模型来模拟雪的可压缩性,并且在粒子和地形表面之间使用了粒子吸引力。为了获得更高的性能,通用的GPU语言和多线程编程被用于冲突检测和解决。结果以不同的渲染方法组合显示,以真实表示流动的雪崩。

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