arrow
返回

Data-driven Radiative Magnetohydrodynamics Simulations with the MURaM Code

delete2023-06-05
delete10
delete
OA
AI
F
Feng Chen *
M
Mark C. M. Cheung
M
M. Rempel
G
Georgios Chintzoglou
DOI:10.3847/1538-4357/acc8c5delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
We present a method of conducting data-driven simulations of solar active regions and flux emergence with the MURaM radiative magnetohydrodynamics (MHD) code. The horizontal electric field that is derived from the full velocity and magnetic vectors is implemented at the photospheric (bottom) boundary to drive the induction equation. The energy equation accounts for thermal conduction along magnetic fields, optically thin radiative loss, and heating of coronal plasma by viscous and resistive dissipation, which allows for a realistic presentation of the thermodynamic properties of coronal plasma that are key to predicting the observational features of solar active regions and eruptions. To validate this method, the photospheric data from a comprehensive radiative MHD simulation of solar eruption (the ground truth) are used to drive a series of numerical experiments. The data-driven simulation reproduces the accumulation of free magnetic energy over the course of flux emergence in the ground truth with an error of 3%. The onset time is approximately 8 minutes delayed compared to the ground truth. However, a precursor-like signature can be identified at the correct onset time. The data-driven simulation captures key eruption-related emission features and plasma dynamics of the ground truth flare over a wide temperature span, from log(10) T = 4.5 to log(10 )T > 8. The evolution of the flare and coronal mass ejection as seen in synthetic extreme ultraviolet images is also reproduced with high fidelity. This method helps to understand the evolution of magnetic field in a more realistic coronal environment and to link the magnetic structures to observable diagnostics.
Keyword:
VECTOR-MAGNETIC-FIELD
ESTIMATING ELECTRIC-FIELDS
SOLAR ACTIVE-REGION
AB-INITIO APPROACH
FLUX ROPE
MHD SIMULATION
CORONAL EVOLUTION
CONVECTION ZONE
DOPPLER DATA
MODEL

期刊

Astrophysical Journal 封面图
Astrophysical Journal
IF:
5.4
论文数:
8.3W
被引数:
32.0W

机构

N
national center atmospheric research (ncar) - usa
学者数:
4.7K
论文数: 5.1K
被引数: 8
C
U
university of colorado boulder
学者数:
2.0W
论文数: 1.5W
被引数: 33
N
nanjing university
学者数:
7.8W
论文数: 5.6W
被引数: 87
学者 查看更多机构
引用论文

引用论文

A UNIFIED COMPUTATIONAL MODEL FOR SOLAR AND STELLAR FLARES
err2015-08-13
err189
errOAAI
errAllred, Joel C.; Kowalski, Adam F.; Carlsson, Mats
err分享
err收藏
Testing the Accuracy of Data-driven MHD Simulations of Active Region Evolution
err2017-03-31
err24
errOAAI
errLeake, James E.; Linton, Mark G.; Schuck, Peter W.
err分享
err收藏
New data-driven method of simulating coronal mass ejections
err2019-06-19
err10
errOAAI
errLiu, Cheng'ao; Chen, Tao; Zhao, Xinhua
err分享
err收藏
Integrin αβ1, αvβ, α6β effectors p130Cas, Src and talin regulate carcinoma invasion and chemoresistance
err2011-03-01
err0
errOAAI
errHope A. Sansing; Ali Sarkeshik; John R. Yates; Vyomesh Patel; J. Silvio Gutkind; Kenneth M. Yamada; Allison L. Berrier
err分享
err收藏
Shock-Train Structure Resolved with Absorption Spectroscopy Part II: Analysis and CFD Comparison
err2009-10-01
err0
PREAI
errChadwick D. Lindstrom; Doug Davis; Skip Williams; Chung-Jen Tam
err分享
err收藏
err分享
err收藏
Solar Magnetic Flux Rope Eruption Simulated by a Data-driven Magnetohydrodynamic Model
err2019-01-14
err45
errOAAI
errGuo, Yang; Xia, Chun; Keppens, Rony; Ding, M. D.; Chen, P. F.
err分享
err收藏
学者 查看更多内容