A Continuous Source Tilting Scheme for Radiative Transfer Equations in Implicit Monte Carlo

IF 0.7 4区 工程技术 Q3 MATHEMATICS, APPLIED Journal of Computational and Theoretical Transport Pub Date : 2020-09-14 DOI:10.1080/23324309.2020.1819331
Yining Shi, Xiaole Han, Wenjun Sun, Peng Song
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引用次数: 11

Abstract

Abstract The implicit Monte Carlo (IMC) method can exhibit teleportation error in problems with strong coupling between radiation and material. Source tilting method is a technique to reduce the teleportation error by representing the emission source as a linear or higher order function in each zone. In this paper, we propose a new spatial reconstruction scheme for the emission source term in the implicit Monte Carlo method. The new reconstruction scheme takes into account of the propagation direction of each photon. A spatially continuous representation for the emission source can be obtained by the reconstruction. We demonstrate that the new scheme can capture the asymptotic diffusion limit in optically thick regions under certain conditions. Numerical simulations show that the continuous reconstruction scheme can significantly reduce the teleportation error and performs better than the one-sided or central difference reconstruction schemes.
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隐式蒙特卡罗辐射传递方程的连续源倾斜格式
摘要隐式蒙特卡罗(IMC)方法在辐射与材料强耦合的问题中可以表现出隐形传态误差。源倾斜法是一种通过将发射源表示为每个区域中的线性或高阶函数来减少隐形传态误差的技术。在本文中,我们提出了一种新的隐式蒙特卡罗方法中发射源项的空间重建方案。新的重建方案考虑了每个光子的传播方向。可以通过重建来获得发射源的空间连续表示。我们证明了在一定条件下,新方案可以捕获光学厚区域的渐近扩散极限。数值模拟表明,连续重构方案可以显著降低隐形传态误差,并且比单边或中心差分重构方案性能更好。
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来源期刊
Journal of Computational and Theoretical Transport
Journal of Computational and Theoretical Transport Mathematics-Mathematical Physics
CiteScore
1.30
自引率
0.00%
发文量
15
期刊介绍: Emphasizing computational methods and theoretical studies, this unique journal invites articles on neutral-particle transport, kinetic theory, radiative transfer, charged-particle transport, and macroscopic transport phenomena. In addition, the journal encourages articles on uncertainty quantification related to these fields. Offering a range of information and research methodologies unavailable elsewhere, Journal of Computational and Theoretical Transport brings together closely related mathematical concepts and techniques to encourage a productive, interdisciplinary exchange of ideas.
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