科技报告详细信息
Higher Order Lagrange Finite Elements In M3D
Chen, J. ; Strauss, H.R. ; Jardin, S.C. ; Park, W. ; Sugiyama, L.E. ; Fu, G. ; Breslau, J.
Princeton University. Plasma Physics Laboratory.
关键词: Transport Computational Physics;    70 Plasma Physics And Fusion Technology;    Anisotropy;    Computer Simulation;    Finite Element Method;   
DOI  :  10.2172/836490
RP-ID  :  PPPL-4032
RP-ID  :  AC02-76CH03073
RP-ID  :  836490
美国|英语
来源: UNT Digital Library
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【 摘 要 】

The M3D code has been using linear finite elements to represent multilevel MHD on 2-D poloidal planes. Triangular higher order elements, up to third order, are constructed here in order to provide M3D the capability to solve highly anisotropic transport problems. It is found that higher order elements are essential to resolve the thin transition layer characteristic of the anisotropic transport equation, particularly when the strong anisotropic direction is not aligned with one of the Cartesian coordinates. The transition layer is measured by the profile width, which is zero for infinite anisotropy. It is shown that only higher order schemes have the ability to make this layer converge towards zero when the anisotropy gets stronger and stronger. Two cases are considered. One has the strong transport direction partially aligned with one of the element edges, the other doesn't have any alignment. Both cases have the strong transport direction misaligned with the grid line by some angles.

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