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A modified implicit Monte Carlo method for time-dependent radiative transfer with adaptive material coupling

机译:自适应材料耦合的时变辐射传递的改进隐式蒙特卡洛方法

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In this paper we develop a robust implicit Monte Carlo (IMC) algorithm based on more accurately updating the linearized equilibrium radiation energy density. The method does not introduce oscillations in the solution and has the same limit as Δ t → ∞ as the standard Fleck and Cummings IMC method. Moreover, the approach we introduce can be trivially added to current implementations of IMC by changing the definition of the Fleck factor. Using this new method we develop an adaptive scheme that uses either standard IMC or the modified method basing the adaptation on a zero-dimensional problem solved in each cell. Numerical results demonstrate that the new method can avoid the nonphysical overheating that occurs in standard IMC when the time step is large. The method also leads to decreased noise in the material temperature at the cost of a potential increase in the radiation temperature noise.
机译:在本文中,我们基于更精确地更新线性化平衡辐射能密度,开发了一种鲁棒的隐式蒙特卡洛(IMC)算法。该方法不会在解中引入振荡,并且与标准Fleck and Cummings IMC方法具有与Δt→∞相同的极限。此外,通过更改Fleck因子的定义,可以将我们介绍的方法简单地添加到IMC的当前实现中。使用这种新方法,我们开发了一种自适应方案,该方案使用标准IMC或基于每个单元中解决的零维问题的自适应方法的改进方法。数值结果表明,该新方法可以避免时间步长较大时在标准IMC中发生的非物理过热。该方法还以降低辐射温度噪声为代价,导致材料温度噪声的降低。

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