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首页> 外文期刊>Contributions to Plasma Physics >Enforcing conservation at Monte Carlo level in a coupled finite volume—Monte Carlo simulation
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Enforcing conservation at Monte Carlo level in a coupled finite volume—Monte Carlo simulation

机译:在耦合有限音量蒙特卡罗模拟中强制保护蒙特卡罗水平

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摘要

>Plasma edge simulations generally require coupling a finite‐volume (FV) fluid plasma discretization with a kinetic neutral Monte Carlo (MC) model. From the MC neutral simulation, source terms are estimated and inserted into the FV plasma simulation, transferring MC stochasticity to the FV simulation. While the FV simulation is based on the physical principle of conservation, most common MC source term estimators do not strictly conserve mass, momentum, and energy. Through the coupling, this also breaks the conservation in the FV simulation. Losing conservation can lead to numerical instability on the one hand and the inability to fulfil global mass, momentum, and energy balances on the other. Presently, the SOLPS‐ITER code rescales the neutral flux launched from the target to mitigate the instability. In this paper, we propose to instead independently rescale each of the source term estimations. We show that rescaling introduces a bias that depends on the number of MC particles and is negligible compared to the statistical error in the simulation. The resulting method restores all conservation properties in the FV/MC code, which will allow monitoring of the convergence through stabilization of the global quantities.
机译:

等离子体边缘模拟通常需要用动力学中性蒙特卡罗(MC)模型耦合有限体积(FV)流体等离子体离散化。从MC中性模拟中,源术语估计并插入到FV等离子体仿真中,将MC随机性传输到FV仿真。虽然Fv模拟基于保护的物理原则,但大多数常见的MC源估算器并不严格保护质量,势头和能量。通过耦合,这也打破了FV模拟中的节约。失去保护可以一方面导致数值不稳定,无法实现另一方面的全球质量,动量和能量余额。目前,Solps-Iter代码重新加入从目标发射的中性磁通量来减轻不稳定性。在本文中,我们建议替代地独立重新归类源期估计。我们表明Rescaling引入了偏差,这取决于MC粒子的数量,与模拟中的统计误差相比可以忽略不计。结果方法恢复FV / MC代码中的所有保护性能,这将通过稳定全局量来监视收敛。

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