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- W2895103653 abstract "We have used the AMR-CESE-MHD model to investigate the influences of the IMF B z and the upstream solar wind dynamic pressure ( D p ) on Earth’s magnetopause and bow shock. Our results present that the earthward displacement of the magnetopause increases with the intensity of the IMF B z . The increase of the northward IMF B z also brings the magnetopause closer to the Earth even though with a small distance. Our simulation results show that the subsolar bow shock during the southward IMF is much closer to the Earth than during the northward IMF. As the intensity of IMF B z increases (also the total field strength), the subsolar bow shock moves sunward as the solar wind magnetosonic Mach number decreases. The sunward movement of the subsolar bow shock during southward IMF are much smaller than that during northward IMF, which indicates that the decrease of solar wind magnetosonic Mach number hardly changes the subsolar bow shock location during southward IMF. Our simulations also show that the effects of upstream solar wind dynamic pressure ( D p ) changes on both the subsolar magnetopause and bow shock locations are much more significant than those due to the IMF changes, which is consistent with previous studies. However, in our simulations the earthward displacement of the subsolar magnetopause during high solar wind D p is greater than that predicted by the empirical models." @default.
- W2895103653 created "2018-10-12" @default.
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- W2895103653 date "2018-01-01" @default.
- W2895103653 modified "2023-10-16" @default.
- W2895103653 title "The responses of the earth’s magnetopause and bow shock to the IMF <i>B</i><sub>z</sub> and the solar wind dynamic pressure: a parametric study using the AMR-CESE-MHD model" @default.
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- W2895103653 doi "https://doi.org/10.1051/swsc/2018030" @default.
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