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Energy and momentum preserving Coulomb collision model for kinetic Monte Carlo simulations of plasma steady states in toroidal fusion devices

机译:能量和动量保持库仑碰撞模型,用于环形聚变装置中等离子体稳态的动力学蒙特卡罗模拟

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摘要

A kinetic Monte Carlo model suited for self-consistent transport studies is proposed and tested. The Monte Carlo collision operator is based on a widely used model of Coulomb scattering by a drifting Maxwellian and a new algorithm enforcing the momentum and energy conservation laws. The difference to other approaches consists in a specific procedure of calculating the background Maxwellian parameters, which does not require ensemble averaging and, therefore, allows for the use of single-particle algorithms. This possibility is useful in transport balance (steady state) problems with a phenomenological diffusive ansatz for the turbulent transport, because it allows a direct use of variance reduction methods well suited for single particle algorithms. In addition, a method for the self-consistent calculation of the electric field is discussed. Results of testing of the new collision operator using a set of 1D examples, and preliminary results of 2D modelling in realistic tokamak geometry, are presented. (C) 2015 Elsevier Inc. All rights reserved.
机译:提出并测试了适用于自洽运输研究的动力学蒙特卡洛模型。蒙特卡洛碰撞算子基于通过漂移麦克斯韦(Maxwellian)广泛使用的库仑散射模型和执行动量和能量守恒定律的新算法。与其他方法的区别在于计算背景麦克斯韦参数的特定过程,该过程不需要整体平均,因此允许使用单粒子算法。这种可能性在湍流传输的现象学弥散性ansatz的传输平衡(稳态)问题中很有用,因为它允许直接使用非常适合单粒子算法的方差减少方法。此外,讨论了一种用于电场自洽计算的方法。介绍了使用一组一维示例测试新碰撞操作员的结果,以及在实际托卡马克几何中进行二维建模的初步结果。 (C)2015 Elsevier Inc.保留所有权利。

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