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首页> 外文期刊>Journal of Computational Physics >A multigroup moment-accelerated deterministic particle solver for 1-D time-dependent thermal radiative transfer problems
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A multigroup moment-accelerated deterministic particle solver for 1-D time-dependent thermal radiative transfer problems

机译:用于1-D时间依赖性热辐射转移问题的多群时刻加速确定性粒子求解器

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摘要

We propose an efficient, robust, Lagrangian (characteristic-based) transport solver for 1-D time-dependent thermal radiative transfer (TRT) applications within the context of a moment-accelerated (High-Order/Low-Order, HOLO) algorithm. This novel transport algorithm inherits the best features of both particle methods (e.g., time accuracy, phase-space adaptivity, positivity) and deterministic, grid-based methods (e.g., no stochastic noise). Particles are evolved by the method of characteristics, with a time-dependent weight that accounts for stiff absorption and reemission process self-consistently. As a result, this approach is able to obtain accurate results while employing large time steps and a moderate number of particles (compared to Implicit Monte Carlo). (C) 2019 Elsevier Inc. All rights reserved.
机译:我们提出了一种高效,坚固的拉格朗日(特征的)传送求解器,用于在时刻加速(高阶/低位,HOLO)算法的上下文中的1-D时间依赖的热辐射转移(TRT)应用。 该新颖的传输算法继承了粒子方法的最佳特征(例如,时间精度,相空间适应性,阳性)和基于确定的网格的方法(例如,没有随机噪声)。 通过特性方法演化的颗粒,具有时间依赖性的重量,该重量占据了僵硬的吸收和再现过程。 结果,这种方法能够在采用大时间步长和中等数量的粒子(与隐式蒙特卡罗相比)的同时获得准确的结果。 (c)2019 Elsevier Inc.保留所有权利。

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