A novel flexible field-aligned coordinate system for tokamak edge plasma simulation

被引:5
|
作者
Leddy, J. [1 ,2 ]
Dudson, B. [1 ]
Romanelli, M. [2 ]
Shanahan, B. [1 ]
Walkden, N. [2 ]
机构
[1] Univ York, Dept Phys, York YO10 5DD, N Yorkshire, England
[2] CCFE, Culham Sci Ctr, Abingdon 0X14 3DB, Oxon, England
基金
英国工程与自然科学研究理事会;
关键词
Detachment; Divertor; Field-aligned coordinates; Tokamak; GEOMETRY; EQUATIONS; PARTICLE;
D O I
10.1016/j.cpc.2016.10.009
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Tokamak plasmas are confined by a magnetic field that limits the particle and heat transport perpendicular to the field. Parallel to the field the ionised particles can move freely, so to obtain confinement the field lines are "closed" (i.e. form closed surfaces of constant poloidal flux) in the core of a tokamak. Towards, the edge, however, the field lines intersect physical surfaces, leading to interaction between neutral and ionised particles, and the potential melting of the material surface. Simulation of this interaction is important for predicting the performance and lifetime of future tokainak devices such as ITER. Field aligned coordinates are commonly used in the simulation of tokamak plasmas due to the geometry and magnetic topology of the system. However, these coordinates are limited in the geometry they allow in the poloidal plane due to orthogonality requirements. A novel 3D coordinate system is proposed herein that relaxes this constraint so that any arbitrary, smoothly varying geometry can be matched in the poloidal plane while maintaining a field-aligned coordinate. This system is implemented in BOUT++ and tested for accuracy using the method of manufactured solutions. A MAST edge cross-section is simulated using a fluid plasma model and the results show expected behaviour for density, temperature, and velocity. Finally, simulations of an isolated divertor leg are conducted with and without neutrals to demonstrate the ion-neutral interaction near the divertor plate and the corresponding beneficial decrease in plasma temperature. (C) 2016 EURATOM. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:59 / 68
页数:10
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