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Reducing the Spatial Discretization Error of Thermal Emission in ImplicitMonte Carlo Simulations

机译:降低隐式蒙特卡罗模拟中热发射的空间离散化误差

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摘要

Implicit Monte Carlo simulations of thermal radiative transport can exhibit what is known as teleportation error in problems with strong coupling between radiation and matter. Teleportation error occurswhen energy deposited in a localized region of a spatial zone is emitted throughout the zone in the next time step. Teleportation error is commonly reduced by biasing the positions of photon thermal emission using a fit to the spatial distribution of temperature to the fourth power. The current work samples and stores locations along photon paths based on absorption probabilities. These locations are used as sites for emission in the subsequent time step. Thismethod of teleportation correction is demonstrated in several sample problems, and is validated against an ImplicitMonte Carlo DiffusionMethod,which does not exhibit teleportation error. The new method reduces teleportation error relative to the source tilting method, and enables the use of lower spatial resolutions than would be required to mitigate teleportation error using the source tilting method.
机译:热辐射传输的隐式蒙特卡罗模拟可以在辐射和物质之间强耦合的问题中表现出所谓的隐形传态误差。当沉积在空间区域的局部区域的能量在下一个时间步长中在整个区域发射时,就会发生隐形传态错误。隐形传态误差通常通过使用拟合温度的空间分布来偏置光子热发射的位置来减少,以达到四次方。当前工作根据吸收概率对光子路径上的位置进行采样和存储。这些位置被用作后续时间步长的发射地点。这种隐形传态校正方法在几个示例问题中得到了验证,并针对隐式蒙特卡洛扩散方法进行了验证,该方法没有表现出隐形传态误差。与源倾斜方法相比,新方法减少了隐形传态误差,并且能够使用比使用源倾斜方法减轻隐形传态误差所需的更低的空间分辨率。

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