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首页> 外文期刊>Jorunal of computational and theoretical transport >Moment-Based Acceleration of Monte Carlo Solution for Multifrequency Thermal Radiative Transfer Problems
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Moment-Based Acceleration of Monte Carlo Solution for Multifrequency Thermal Radiative Transfer Problems

机译:基于矩的蒙特卡洛解决方案对多频热辐射传递问题的加速

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We have extended a Monte Carlo-based, moment-based acceleration algorithm to the solution of multifrequency thermal radiative transfer problems. This study focuses on two aspects. First, we consider stability/accuracy issues for a predictor-corrector time-stepping. It is demonstrated that with a consistent Planckian-weighted opacity the predictor-corrector algorithm can run stably with a larger time-step size compared to a fixed (or lagged) opacity case. With this advancement, consistency improves by about two orders of magnitude, while additional computational cost is kept minimal (<10%). We also extend the "asymptotic assistance" concept to multifrequency problems. This technique replaces the multifrequency Monte Carlo solution with an asymptotic solution of the O(?) accurate solution of the equilibrium diffusion limit in optically thick regions. With this technique, the computational time is reduced about a factor of four in a one-dimensional problem. Furthermore, the solution with asymptotic assistance can become more accurate for a similar computational time because it enables a finer group structure in the high-order problem.
机译:我们已将基于蒙特卡洛的基于矩的加速度算法扩展到多频热辐射传递问题的解决方案。这项研究集中在两个方面。首先,我们考虑预测器-校正器时间步长的稳定性/准确性问题。结果表明,与固定(或滞后)不透明情况相比,使用一致的普朗克加权不透明性,预测器-校正器算法可以以更大的时间步长稳定运行。随着这一进步,一致性提高了大约两个数量级,同时使额外的计算成本保持最小(<10%)。我们还将“渐近辅助”概念扩展到多频问题。该技术用光学较厚区域中的平衡扩散极限的O(ω)精确解的渐近解代替了多频蒙特卡洛解。使用这种技术,在一维问题中的计算时间减少了大约四倍。此外,具有渐近辅助的解决方案在相似的计算时间内可以变得更加准确,因为它可以解决高阶问题中的更精细的组结构。

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