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De Zeeuw et al. 1996
De Zeeuw, D.L., Nagy, A.F., Gombosi, T.I., Powell, K.G. and Luhmann, J.G. (1996). A new axisymmetric MHD model of the interaction of the solar wind with Venus. Journal of Geophysical Research 101: doi: 10.1029/95JE03363. issn: 0148-0227.

A new two-dimensional axisymmetric MHD model is used to study the interaction of the solar wind with Venus under conditions where the interplanetary field is approximately aligned with the solar wind velocity. This numerical model solves the MHD transport equations for density, velocity, pressure, and magnetic field on an adaptively refined, unstructured grid system. This use of an adaptive grid allows high spatial resolution in regions of large density/velocity gradients and yet can be run on a workstation. The actual grid sizes vary from about 0.06 Rv near the bowshock to 2 Rv in the unperturbed solar wind. The results of the calculations are compared with observed magnetic field values obtained from the magnetometer on the Pioneer Venus Orbiter, at a time when the angle between the solar wind velocity vector and the interplanetary magnetic field (IMF) was only 7.6¿. Good qualitative agreement between the observed and calculated field behavior is found. The overall results suggest that the induced magnetotail disappears when the IMF is radial for an extended time period and implies that it weakens when the field rotated through a near-radial orientation. ¿ American Geophysical Union 1996

BACKGROUND DATA FILES

Abstract

Keywords
Planetology, Solid Surface Planets, Interactions with particles and fields, Planetology, Solar System Objects, Venus, Magnetospheric Physics, Numerical modeling
Journal
Journal of Geophysical Research
http://www.agu.org/journals/jb/
Publisher
American Geophysical Union
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