Orbital advection by interpolation: A fast and accurate numerical scheme for super-fast MHD flows

被引:37
|
作者
Johnson, Bryan M. [1 ]
Guan, Xiaoyue [1 ]
Gammie, Charles F. [1 ]
机构
[1] Univ Illinois, Ctr Theoret Astrophys, Urbana, IL 61801 USA
来源
关键词
methods : numerical; MHD;
D O I
10.1086/586707
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In numerical models of thin astrophysical disks that use a Eulerian scheme, gas orbits supersonically through a fixed grid. As a result the time step is sharply limited by the Courant condition. Also, because the mean flow speed with respect to the grid varies with position, the truncation error varies systematically with position. For hydrodynamic (unmagnetized) disks an algorithm called FARGO has been developed that advects the gas along its mean orbit using a separate interpolation substep. This relaxes the constraint imposed by the Courant condition, which now depends only on the peculiar velocity of the gas, and results in a truncation error that is more nearly independent of position. This paper describes a FARGO-like algorithm suitable for evolving magnetized disks. Our method is second-order-accurate on a smooth flow and preserves del center dot B = 0 to machine precision. The main restriction is that B must be discretized on a staggered mesh. We give a detailed description of an implementation of the code and demonstrate that it produces the expected results on linear and nonlinear problems. We also point out how the scheme might be generalized to make the integration of other supersonic/superfast flows more efficient. Although our scheme reduces the variation of truncation error with position, it does not eliminate it. We show that the residual position dependence leads to characteristic radial variations in the density over long integrations.
引用
收藏
页码:373 / 387
页数:15
相关论文
共 50 条
  • [31] A super-fast optimal attitude matrix in attitude determination
    Yan Gongmin
    Chen Ruotong
    Weng Jun
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2021, 32 (09)
  • [32] Optimizing a Super-fast Eigensolver for Hierarchically Semiseparable Matrices
    Josyula, Abhishek
    Verma, Pritesh
    Gaonkar, Amar
    Barua, Amlan
    Hegde, Nikhil
    53RD INTERNATIONAL CONFERENCE ON PARALLEL PROCESSING, ICPP 2024, 2024, : 32 - 41
  • [33] New and notable Physics of a super-fast viral jab
    Mogilner, Alex
    BIOPHYSICAL JOURNAL, 2025, 124 (01) : 1 - 2
  • [34] SUPER-FAST SON OF PENTIUM MAKES EDUCATED GUESS
    ARTHUR, C
    NEW SCIENTIST, 1995, 145 (1966) : 20 - 20
  • [35] Super-Fast and Super-Long-Life Rechargeable Zinc Battery
    Khodayar, Navid
    Noori, Abolhassan
    Rahmanifar, Mohammad S.
    Shabangoli, Yasin
    Baghervand, Afshin
    El-Kady, Maher F.
    Hassani, Nasim
    Chang, Xueying
    Neek-Amal, Mehdi
    Kaner, Richard B.
    Mousavi, Mir F.
    ADVANCED ENERGY MATERIALS, 2022, 12 (43)
  • [36] A Proposed Optical System for Implementing the Novel Super-Fast Image Processing Scheme - the LPED Method
    Hu, Chialun John
    OPTICAL PATTERN RECOGNITION XXV, 2014, 9094
  • [37] Compressed IAA based Super-Fast Radar Map Generation
    Choi, Sungdo
    Kim, Byungkwan
    Cho, Hyun-Woong
    Lee, Seongwook
    Kim, Woosuk
    Eo, Minsung
    Khang, Seungtae
    Kim, Jongseok
    2019 IEEE SENSORS, 2019,
  • [38] Super-Fast Parallel Eigenface Implementation on GPU for Face Recognition
    Devani, Urvesh
    Nikam, Valmik B.
    Meshram, B. B.
    2014 INTERNATIONAL CONFERENCE ON PARALLEL, DISTRIBUTED AND GRID COMPUTING (PDGC), 2014, : 130 - 136
  • [39] Super-Fast Algorithm for Minimum Variance (Capon) Spectral Estimation
    Marple, S. Lawrence, Jr.
    Adeli, Majid
    Liu, Huaping
    2010 CONFERENCE RECORD OF THE FORTY FOURTH ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS AND COMPUTERS (ASILOMAR), 2010, : 1832 - 1836
  • [40] A Super-Fast Online Face Tracking System for Video Surveillance
    Lan, Xiaosong
    Xiong, Zhiwei
    Zhang, Wei
    Li, Shuxiao
    Chang, Hongxing
    Zeng, Wenjun
    2016 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS (ISCAS), 2016, : 1998 - 2001