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Two Approaches to Accelerated Monte Carlo Simulation of Coulomb Collisions.

机译:加速库仑碰撞的蒙特卡罗模拟的两种方法。

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摘要

In plasma physics, the direct simulation of inter-particle Coulomb collisions is often necessary to capture the relevant physics, but presents a computational bottleneck because of the complexity of the process. In this thesis, we derive, test and discuss two methods for accelerating the simulation of collisions in plasmas in certain scenarios.;The first is a hybrid fluid-Monte Carlo scheme that reduces the number of collisions that must be simulated. Coupling between the fluid and particle components of the scheme is accomplished by assigning to each particle a passive scalar approximating the relative entropy between its distribution of velocities and the fluid distribution. When this quantity is sufficiently small, the particle is moved into the fluid so its associated collisions need not be simulated.;The second method is an adaptation of the multilevel Monte Carlo method. Instead of a single time step, this method introduces a hierarchy of time steps - i.e. levels - and uses the interplay between adjacent levels for variance reduction. We present new applications to plasmas, a method for eliminating the cost of the coarsest level calculation, and an alternative method for achieving the optimal overall computational complexity.;Throughout, we discuss applications beyond plasma physics, including rarefied gases and chemical reaction networks.
机译:在等离子物理学中,粒子间库仑碰撞的直接模拟通常是捕获相关物理学所必需的,但由于过程的复杂性,存在计算瓶颈。在本文中,我们推导,测试和讨论了在某些情况下加速等离子体碰撞仿真的两种方法。第一种是减少必须模拟碰撞次数的混合流体-蒙特卡洛方案。该方案的流体和粒子成分之间的耦合是通过为每个粒子分配一个被动标量来实现的,该被动标量近似于其速度分布和流体分布之间的相对熵。当此数量足够小时,粒子将移动到流体中,因此不需要模拟其相关的碰撞。第二种方法是对多级蒙特卡洛方法的一种适应。该方法代替了单个时间步长,而是引入了时间步长的层次结构(即级别),并使用相邻级别之间的相互作用来减少方差。我们介绍了等离子体的新应用,消除了最粗略计算成本的方法以及实现最佳整体计算复杂性的替代方法。贯穿其中,我们讨论了等离子体物理以外的应用,包括稀有气体和化学反应网络。

著录项

  • 作者

    Ricketson, Lee Forrest.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Applied Mathematics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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