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首页> 外文期刊>Geophysical Research Letters >Can we probe the conductivity of the lithosphere and upper mantle using satellite tidal magnetic signals?
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Can we probe the conductivity of the lithosphere and upper mantle using satellite tidal magnetic signals?

机译:我们能否使用卫星潮汐磁信号探测岩石圈和上地幔的电导率?

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摘要

A few studies convincingly demonstrated that the magnetic fields induced by the lunar semidiurnal (M2) ocean flow can be identified in satellite observations. This result encourages using M2 satellite magnetic data to constrain subsurface electrical conductivity in oceanic regions. Traditional satellite-based induction studies using signals of magnetospheric origin are mostly sensitive to conducting structures because of the inductive coupling between primary and induced sources. In contrast, galvanic coupling from the oceanic tidal signal allows for studying less conductive, shallower structures. We perform global 3-D electromagnetic numerical simulations to investigate the sensitivity of M2 signals to conductivity distributions at different depths. The results of our sensitivity analysis suggest it will be promising to use M2 oceanic signals detected at satellite altitude for probing lithospheric and upper mantle conductivity. Our simulations also suggest that M2 seafloor electric and magnetic field data may provide complementary details to better constrain lithospheric conductivity.
机译:令人信服的一些研究表明,在卫星观测中可以识别出月半日(M2)海流感应的磁场。该结果鼓励使用M2卫星磁数据来约束海洋区域的地下电导率。由于主要和感应源之间的感应耦合,使用磁层起源信号的传统基于卫星的感应研究对传导结构最敏感。相比之下,来自海洋潮汐信号的电流耦合允许研究导电性更强,更浅的结构。我们执行全局3-D电磁数值模拟,以研究M2信号对不同深度电导率分布的敏感性。我们的敏感性分析结果表明,将有希望使用在卫星高度检测到的M2海洋信号来探测岩石圈和上地幔电导率。我们的模拟还表明,M2海底电场和磁场数据可能会提供补充细节,以更好地限制岩石圈电导率。

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