[口头报告]On the nature and origin of Martian plume during solar wind interaction with Mars

On the nature and origin of Martian plume during solar wind interaction with Mars
编号:3342 稿件编号:1846 访问权限:仅限参会人 更新:2024-04-13 13:49:58 浏览:45次 口头报告

报告开始:2024年05月20日 10:15 (Asia/Shanghai)

报告时间:10min

所在会议:[S10] 主题10、行星科学与空间物理 » [S10-5] 主题10、行星科学与空间物理 专题10.7(20日上午,205)

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摘要
Investigating the physical mechanism of ion escape on Mars is crucial for comprehending the evolution of Martain space environment. The plume structure situated in the northern hemisphere of Mars serves as a significant pathway for planetary ion escape, contributing more than 20 percent to the overall ion escape rate. In this study, a three-dimensional multi-fluid Hall MHD numerical model is utilized to simulate the ion escape process of Mars. A force analysis is conducted to examine the electric field exerted on Oand to investigate the density, velocity and escape flux of O+. Numerical results indicate that both the convection electric force and the Lorentz force play essential roles in driving ion escape in the plume region and shaping the morphology of ion eacaping fluxes. The plume is positioned above the magnetic pile-up boundary (MPB), as the convection electric field dicrected towards the +Z direction primarily influences the area above the MPB. Furthermore, the Hall electric field electric field points outward and reaches the peak values at the MPB, while the ambipolar electric field peaks at the bow shock (BS). In addition, the ions escaping from the plume predominantly originates from middle and high latitudes of the +E hemisphere on the Martian dayside. The plume escape rate is  4.33×1023s-1, while the tailward escape’s is 1.74×1024s-1. The plume escape rate accounts for 24.83% of the tail escape rate and 19.89% of the overall escape rate.
关键字
Mars,Numerical simulation,Martian plume escape,Martain electric field distribution
报告人
曹宇辰
硕士研究生 北京航空航天大学

稿件作者
曹宇辰 北京航空航天大学
吕浩宇 北京航空航天大学
曹晋滨 北京航空航天大学
李仕邦 北京航空航天大学
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