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Numerical modeling of the solar wind flow with observational boundary conditions

Authors :
Robert Ebert
Igor Kryukov
S. N. Borovikov
L. F. Burlaga
S. Wu
Jacob Heerikhuisen
Gary P. Zank
Nikolai V. Pogorelov
T. K. Kim
Steven T. Suess
Source :
AIP Conference Proceedings.
Publication Year :
2012
Publisher :
AIP, 2012.

Abstract

In this paper we describe our group efforts to develop a self-consistent, data-drivenmodel of the solar wind (SW) interaction with the local interstellar medium. The motion of plasma in this model is described with the MHD approach, while the transport of neutral atoms is addressed by either kinetic or multi-fluid equations. The model and its implementation in the Multi-Scale Fluid-Kinetic Simulation Suite (MS-FLUKSS) are continuously tested and validated by comparing our results with other models and spacecraft measurements. In particular, it was successfully applied to explain an unusual SW behavior discovered by the Voyager 1 spacecraft, i.e., the development of a substantial negative radial velocity component, flow turning in the transverse direction, while the latitudinal velocity component goes to very small values. We explain recent SW velocity measurements at Voyager 1 in the context of our 3-D, MHD modeling. We also present a comparison of different turbulence models in their ability to reproduce the SW temperature profile from Voyager 2 measurements. The boundary conditions obtained at 50 solar radii from data-driven numerical simulations are used to model a CME event throughout the heliosphere.

Details

ISSN :
0094243X
Database :
OpenAIRE
Journal :
AIP Conference Proceedings
Accession number :
edsair.doi...........833ba513e91c9ee617438507f8feb866
Full Text :
https://doi.org/10.1063/1.4768756