Multifluid MHD Simulations of the Plasma Environment of Comet Churyumov-Gerasimenko at Different Heliocentric Distances

Zhenguang Huang1, Xianzhe Jia2, Martin Rubin3, Nicolas Fougere2, Tamas I Gombosi2, Valeriy Tenishev2, Michael R Combi2, Andre Michel Bieler2, Gabor Toth2, Kenneth C Hansen2 and Yinsi Shou2, (1)University of Michigan, Climate and Space Sciences and Engineering, Ann Arbor, United States, (2)University of Michigan, Ann Arbor, MI, United States, (3)University of Bern, Physics Institute, Space Research and Planetary Sciences, Bern, Switzerland
Abstract:
We study the plasma environment of the comet Churyumov-Gerasimenko, which is the target of the Rosetta mission, by performing large scale numerical simulations. Our model is based on BATS-R-US within the Space Weather Modeling Framework that solves the governing multifluid MHD equations, which describe the behavior of the cometary heavy ions, the solar wind protons, and electrons. The model includes various mass loading processes, including ionization, charge exchange, dissociative ion-electron recombination, as well as collisional interactions between different fluids. The neutral background used in our MHD simulations is provided by a kinetic Direct Simulation Monte Carlo (DSMC) model. We will simulate how the cometary plasma environment changes at different heliocentric distances.