HELIOSPHERIC PROPAGATION OF CORONAL MASS EJECTIONS: DRAG-BASED MODEL FITTING

被引:58
|
作者
Zic, T. [1 ]
Vrsnak, B. [1 ]
Temmer, M. [2 ]
机构
[1] Univ Zagreb, Hvar Observ, Fac Geodesy, HR-10000 Zagreb, Croatia
[2] Graz Univ, Inst Phys, IGAM, Kanzelhohe Observ, A-8010 Graz, Austria
来源
ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES | 2015年 / 218卷 / 02期
基金
奥地利科学基金会;
关键词
methods: analytical; methods: numerical; solar-terrestrial relations; solar wind; Sun: corona; Sun: coronal mass ejections (CMEs); AERODYNAMIC DRAG; KINEMATICS; FORCES; RECONSTRUCTION; EVOLUTION; REMOTE; CMES;
D O I
10.1088/0067-0049/218/2/32
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The so-called drag-based model (DBM) simulates analytically the propagation of coronal mass ejections (CMEs) in interplanetary space and allows the prediction of their arrival times and impact speeds at any point in the heliosphere ("target"). The DBM is based on the assumption that beyond a distance of about 20 solar radii from the Sun, the dominant force acting on CMEs is the "aerodynamic" drag force. In the standard form of DBM, the user provisionally chooses values for the model input parameters, by which the kinematics of the CME over the entire Sun-"target" distance range is defined. The choice of model input parameters is usually based on several previously undertaken statistical studies. In other words, the model is used by ad hoc implementation of statistics-based values of the input parameters, which are not necessarily appropriate for the CME under study. Furthermore, such a procedure lacks quantitative information on how well the simulation reproduces the coronagraphically observed kinematics of the CME, and thus does not provide an estimate of the reliability of the arrival prediction. In this paper we advance the DBM by adopting it in a form that employs the CME observations over a given distance range to evaluate the most suitable model input parameters for a given CME by means of least-squares fitting. Furthermore, the new version of the model automatically responds to any significant change of the conditions in the ambient medium (solar wind speed, density, CME-CME interactions, etc.) by changing the model input parameters according to changes in the CME kinematics. The advanced DBM is shaped in a form that can be readily employed in an operational system for real-time space-weather forecasting by promptly adjusting to a successively expanding observational data set, thus providing a successively improving prediction of the CME arrival.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Propagation of Interplanetary Coronal Mass Ejections: The Drag-Based Model
    Vrsnak, B.
    Zic, T.
    Vrbanec, D.
    Temmer, M.
    Rollett, T.
    Moestl, C.
    Veronig, A.
    Calogovic, J.
    Dumbovic, M.
    Lulic, S.
    Moon, Y-J
    Shanmugaraju, A.
    SOLAR PHYSICS, 2013, 285 (1-2) : 295 - 315
  • [2] Propagation of Interplanetary Coronal Mass Ejections: The Drag-Based Model
    B. Vršnak
    T. Žic
    D. Vrbanec
    M. Temmer
    T. Rollett
    C. Möstl
    A. Veronig
    J. Čalogović
    M. Dumbović
    S. Lulić
    Y.-J. Moon
    A. Shanmugaraju
    Solar Physics, 2013, 285 : 295 - 315
  • [3] Forecasting the Arrival of Coronal Mass Ejections: The Drag-Based Model
    Vrsnak, B.
    Temmer, M.
    Zic, Tomislav
    Dumbovic, M.
    Calogovic, J.
    GROUND-BASED SOLAR OBSERVATIONS IN THE SPACE INSTRUMENTATION ERA, 2016, 504 : 209 - 210
  • [4] HELIOSPHERIC PROPAGATION OF CORONAL MASS EJECTIONS: COMPARISON OF NUMERICAL WSA-ENLIL plus CONE MODEL AND ANALYTICAL DRAG-BASED MODEL
    Vrsnak, B.
    Temmer, M.
    Zic, T.
    Taktakishvili, A.
    Dumbovic, M.
    Moestl, C.
    Veronig, A. M.
    Mays, M. L.
    Odstrcil, D.
    ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 2014, 213 (02):
  • [5] Extended drag-based model for better predicting the evolution of coronal mass ejections
    Rossi, M.
    Guastavino, S.
    Piana, M.
    Massone, A. M.
    ASTRONOMY & ASTROPHYSICS, 2025, 694
  • [6] The Drag-based Ensemble Model (DBEM) for Coronal Mass Ejection Propagation
    Dumbovic, Mateja
    Calogovic, Jasa
    Vrsnak, Bojan
    Temmer, Manuela
    Mays, M. Leila
    Veronig, Astrid
    Piantschitsch, Isabell
    ASTROPHYSICAL JOURNAL, 2018, 854 (02):
  • [7] How Magnetic Erosion Affects the Drag-Based Kinematics of Fast Coronal Mass Ejections
    Sotiris Stamkos
    Spiros Patsourakos
    Angelos Vourlidas
    Ioannis A. Daglis
    Solar Physics, 2023, 298
  • [8] How Magnetic Erosion Affects the Drag-Based Kinematics of Fast Coronal Mass Ejections
    Stamkos, Sotiris
    Patsourakos, Spiros
    Vourlidas, Angelos
    Daglis, Ioannis A.
    SOLAR PHYSICS, 2023, 298 (07)
  • [9] Probabilistic Drag-Based Ensemble Model (DBEM) Evaluation for Heliospheric Propagation of CMEs
    Jaša Čalogović
    Mateja Dumbović
    Davor Sudar
    Bojan Vršnak
    Karmen Martinić
    Manuela Temmer
    Astrid M. Veronig
    Solar Physics, 2021, 296
  • [10] Probabilistic Drag-Based Ensemble Model (DBEM) Evaluation for Heliospheric Propagation of CMEs
    Calogovic, Jasa
    Dumbovic, Mateja
    Sudar, Davor
    Vrsnak, Bojan
    Martinic, Karmen
    Temmer, Manuela
    Veronig, Astrid M.
    SOLAR PHYSICS, 2021, 296 (07)