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首页> 外文期刊>Journal of Computational Physics >An Unsplit Monte-Carlo solver for the resolution of the linear Boltzmann equation coupled to (stiff) Bateman equations
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An Unsplit Monte-Carlo solver for the resolution of the linear Boltzmann equation coupled to (stiff) Bateman equations

机译:用于分辨率的直接蒙特卡罗求解器,用于耦合到(刚性)Bateman方程的线性Boltzmann方程

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摘要

In this paper, we are interested in the resolution of the time-dependent problem of particle transport in a medium whose composition evolves with time due to interactions. As a constraint, we want to use of Monte-Carlo (MC) scheme for the transport phase. A common resolution strategy consists in a splitting between the MC/transport phase and the time discretization scheme/medium evolution phase. After going over and illustrating the main drawbacks of split solvers in a simplified configuration (monokinetic, scalar Bateman problem), we build a new Unsplit MC (UMC) solver improving the accuracy of the solutions, avoiding numerical instabilities, and less sensitive to time discretization. The new solver is essentially based on a Monte Carlo scheme with time dependent cross sections implying the on-the-fly resolution of a reduced model for each MC particle describing the time evolution of the matter along their flight path. (C) 2017 Elsevier Inc. All rights reserved.
机译:在本文中,我们对分辨于介质中的粒子运输的时间依赖性问题感兴趣,其构成由于相互作用而随着时间的推移而随之而来的。 作为一个约束,我们希望使用用于运输阶段的Monte-Carlo(MC)方案。 公共分辨率策略包括在MC /传输阶段与时间离散化方案/中等演化阶段之间的分裂。 在简化配置中缩短并说明分割求解器的主要缺点(单一的标量标枪问题),我们建立一个新的UNSPLIT MC(UMC)求解器,提高了解决方案的准确性,避免了数值不稳定性,并且对时间离散化的敏感性不太敏感 。 新的求解器基本上基于具有时间相关横截面的蒙特卡罗方案,这意味着对每个MC粒子的减少模型的在飞行分辨率上,用于描述其飞行路径的时间演变。 (c)2017年Elsevier Inc.保留所有权利。

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