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首页> 外文期刊>Journal of Computational Physics >A multi-dimensional, moment-accelerated deterministic particle method for time-dependent, multi-frequency thermal radiative transfer problems
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A multi-dimensional, moment-accelerated deterministic particle method for time-dependent, multi-frequency thermal radiative transfer problems

机译:多维,时刻加速的时间依赖性多频热辐射转移问题的确定性粒子方法

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摘要

Thermal Radiative Transfer (TRT) is the dominant energy transfer mechanism in high-energy density physics with applications in inertial confinement fusion and astrophysics. The stiff interactions between the material and radiation fields make TRT problems challenging to model. In this study, we propose a multi-dimensional extension of the deterministic particle (DP) method. The DP method combines aspects from both particle and deterministic methods. If the emission source is known a priori, and no physical scattering is present, the intensity of a particle can be integrated analytically. This introduces no statistical noise compared to Monte-Carlo methods, while maintaining the flexibility of particle methods. The method is closely related to the popular method of long characteristics. The combination of the DP-method with a discretely-consistent, nonlinear, gray low-order system enables an efficient solution algorithm for multi-frequency TRT problems. We demonstrate with numerical examples that the use of a linear-source approximation based on spatial moments improves the behavior of our method in the thick diffusion limit significantly. (C) 2019 Elsevier Inc. All rights reserved.
机译:热辐射转移(TRT)是高能量密度物理中的主要能量转移机制,具有惯性监禁融合和天体物理学的应用。材料与辐射场之间的刚性相互作用使得TRT问题挑战模型。在本研究中,我们提出了确定性粒子(DP)方法的多维延伸。 DP方法组合了来自粒子和确定性方法的方面。如果已知发射源是先验的,并且没有存在物理散射,则可以在分析上集成粒子的强度。与Monte-Carlo方法相比,这不会引入统计噪音,同时保持颗粒方法的灵活性。该方法与流行的长特性方法密切相关。具有离散 - 一致的非线性的灰度低阶系统的DP方法的组合使得能够有效的多频TRT问题解决方案算法。我们证明了基于空间时刻的线性源近似的数值例子来显着提高了我们的方法在厚扩散极限中的行为。 (c)2019 Elsevier Inc.保留所有权利。

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