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Monte Carlo simulation methods in moment-based scale-bridging algorithms for thermal radiative-transfer problems

机译:基于矩的尺度桥接算法中热辐射传递问题的蒙特卡罗模拟方法

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We present a moment-based acceleration algorithm applied to Monte Carlo simulation of thermal radiative-transfer problems. Our acceleration algorithm employs a continuum system of moments to accelerate convergence of stiff absorption-emission physics. The combination of energy-conserving tallies and the use of an asymptotic approximation in optically thick regions remedy the difficulties of local energy conservation and mitigation of statistical noise in such regions. We demonstrate the efficiency and accuracy of the developed method. We also compare directly to the standard linearization-based method of Fleck and Cummings [1]. A factor of 40 reduction in total computational time is achieved with the new algorithm for an equivalent (or more accurate) solution as compared with the Fleck-Cummings algorithm. (C) 2014 Elsevier Inc. All rights reserved.
机译:我们提出了一种基于矩的加速度算法,该算法应用于热辐射传递问题的蒙特卡洛模拟。我们的加速算法采用了一个连续的力矩系统来加速刚性吸收发射物理的收敛。在光学较厚的区域中,将节能记录和渐近逼近相结合,可以弥补局部节能和减轻此类区域统计噪声的困难。我们证明了所开发方法的效率和准确性。我们还直接与基于标准线性化的Fleck和Cummings方法进行比较[1]。与Fleck-Cummings算法相比,使用该新算法可将等效(或更精确)的解决方案的总计算时间减少40倍。 (C)2014 Elsevier Inc.保留所有权利。

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