首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A three-dimensional, multispecies, comprehensive MHD model of the solar wind interaction with the planet Venus
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A three-dimensional, multispecies, comprehensive MHD model of the solar wind interaction with the planet Venus

机译:一个三维,multispecies、全面磁流体动力太阳风相互作用的模型金星

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摘要

We present our newly developed numerical model of the solar wind interaction with the planet Venus. The model solves three-dimensional, 10-ion-species magnetohydrodynamic (MHD) equations using a total variation diminishing monotonic upstream scheme for conservation laws, which is implemented on an unstructured grid system. These equations describe the dynamics of both the solar wind and the planetary ionosphere. An excellent performance of the model is verified by comparing our numerical results with the existing numerical and observational data. In particular, profiles of the magnetic field, number densities, velocity, and transterminator flux of ionospheric plasma are shown to reproduce the observational findings. A main goal of this paper is to present the numerical model and its performance for the general dynamics and structures of the solar wind interaction with the ionosphere of Venus.
机译:我们现在新开发的数值模型太阳风与金星的交互。该模型解决了三维,10-ion-species磁流体动力(磁流体动力)使用总变异递减方程单调上游方案的守恒定律,这是实现非结构化网格吗系统。太阳风和地球电离层。一个优秀的模型的性能验证通过比较我们的数值结果现有的数值和观测数据。的磁场,数密度、速度和transterminator通量的电离层等离子体繁殖所示观测结果。纸是目前数值模型及其通用动力公司和性能太阳风相互作用的结构电离层的金星。

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