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An efficient parallel semi-implicit solver for anisotropic thermal conduction in the solar corona
Ye J(叶景)1,2; Shen, Chengcai3; Lin J(林隽)1,2,4; Mei ZX(梅志星)1,2
发表期刊ASTRONOMY AND COMPUTING
2020-01
卷号30页码:14
DOI10.1016/j.ascom.2019.100341
产权排序第1完成单位
收录类别SCI ; EI
关键词Magnetohydrodynamics Spitzer conductivity Anisotropic diffusion Numerical methods Parallel algorithm
摘要

Anisotropic thermal conduction plays an important role in determining the structure of the hot plasma in the solar corona. When hot plasma appears, the conductivity rises with temperature and becomes highly nonlinear. Explicit solvers for parabolic problems often lead to much smaller time-steps limited by a Courant-Friedrichs-Lewy (CFL) condition in comparison with hyperbolic Magnetohydrodynamics (MHD) equations. In this work, we present a pseudo-linear, directionally-split, semi-implicit method allowing for large time-steps as well as the optimized parallelization algorithm, integrated with the MHD solver. Our scheme can perfectly preserve the monotonicity and the geometry of shocks and discontinuities in complex MHD problems. Two sets of numerical tests show that an increase in time step of similar to 600 can be easily achieved with an acceptable error by our scheme compared to explicit methods, and the use of large time-steps can still follow fast dynamic processes reliably. In addition, the extendibility studies have proven that the associated parallel efficiency is comparably high. This method is also useful for any kind of time-dependent conductivity problems for the solar applications in the future. (C) 2019 Elsevier B.V. All rights reserved.

资助项目NSFC, China[11603070] ; NSFC, China[11333007] ; NSFC, China[U1631130] ; NSFC, China[11933009] ; CAS, China[QYZDJ-SSWSLH012] ; CAS, China[XDA15010900] ; Strategic Priority Research Program of CAS, China[XDA17040507] ; Group for Innovation of Yunnan Province[2018HC023] ; Yunnan Ten-Thousand Talents Plan-Yunling Scholar Project ; Special Program for Applied Research on Super Computation of the NSFC-Guangdong Joint Fund (the second phase), China[U1501501] ; National Science Foundation of U.S. grants[AGS-1358342] ; National Science Foundation of U.S. grants[AGS-1723313] ; National Science Foundation of U.S. grants[AGS-1723425]
项目资助者NSFC, China[11603070, 11333007, U1631130, 11933009] ; CAS, China[QYZDJ-SSWSLH012, XDA15010900] ; Strategic Priority Research Program of CAS, China[XDA17040507] ; Group for Innovation of Yunnan Province[2018HC023] ; Yunnan Ten-Thousand Talents Plan-Yunling Scholar Project ; Special Program for Applied Research on Super Computation of the NSFC-Guangdong Joint Fund (the second phase), China[U1501501] ; National Science Foundation of U.S. grants[AGS-1358342, AGS-1723313, AGS-1723425]
语种英语
学科领域数学 ; 太阳物理学
文章类型Article
出版者ELSEVIER
出版地RADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS
ISSN2213-1337
URL查看原文
WOS记录号WOS:000519275000002
WOS研究方向Astronomy & Astrophysics ; Computer Science
WOS类目Astronomy & Astrophysics ; Computer Science, Interdisciplinary Applications
关键词[WOS]RADIATION MAGNETOHYDRODYNAMICS CODE ; UNSPLIT GODUNOV METHOD ; 2 SPACE DIMENSIONS ; ASTROPHYSICAL FLOWS ; CURRENT SHEET ; HYDRODYNAMIC ALGORITHMS ; IDEAL MHD ; ZEUS-2D ; TRANSPORT ; SCHEME
EI入藏号20194407613208
EI主题词Magnetohydrodynamics
EI分类号615.3 Magnetohydrodynamics (MHD) Power Generation - 657.1 Solar Energy and Phenomena - 701.2 Magnetism: Basic Concepts and Phenomena - 921.6 Numerical Methods - 931.2 Physical Properties of Gases, Liquids and Solids
引用统计
被引频次:3[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/21187
专题太阳物理研究组
通讯作者Ye J(叶景)
作者单位1.Yunnan Observatories, Chinese Academy of Sciences, P.O. Box 110, Kunming, Yunnan 650216, China
2.Center for Astronomical Mega-Science, Chinese Academy of Sciences, Beijing 100012, China
3.Smithsonian Astrophysical Observatory, 60 Garden Street, MS 15, Cambridge, MA 02138, US
4.University of Chinese Academy of Sciences, Beijing 100049, China
第一作者单位中国科学院云南天文台
通讯作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
Ye J,Shen, Chengcai,Lin J,et al. An efficient parallel semi-implicit solver for anisotropic thermal conduction in the solar corona[J]. ASTRONOMY AND COMPUTING,2020,30:14.
APA Ye J,Shen, Chengcai,Lin J,&Mei ZX.(2020).An efficient parallel semi-implicit solver for anisotropic thermal conduction in the solar corona.ASTRONOMY AND COMPUTING,30,14.
MLA Ye J,et al."An efficient parallel semi-implicit solver for anisotropic thermal conduction in the solar corona".ASTRONOMY AND COMPUTING 30(2020):14.
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