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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Lithospheric rheological heterogeneity across an intraplate rift basin (Linfen Basin, North China) constrained from magnetotelluric data: Implications for seismicity and rift evolution
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Lithospheric rheological heterogeneity across an intraplate rift basin (Linfen Basin, North China) constrained from magnetotelluric data: Implications for seismicity and rift evolution

机译:岩土内裂解盆地(华北地区林芬盆地)的岩性流变异质性受到磁识别数据的约束:对地震性和裂谷演化的影响

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AbstractWe take the Linfen Basin, which is the most active segment of the Cenozoic intraplate Shanxi Rift, as an example, showing how to use magnetotelluric data to constrain lithospheric rheological heterogeneities of intraplate tectonic zones. Electrical resistivity models, combined with previous rheological numerical simulation, show a good correlation between resistivity and rheological strength, indicating the mechanisms of enhanced conductivity could also be reasons of reduced viscosity. The crust beneath the Linfen Basin shows overall stratified features in both electrical resistivity and rheology. The uppermost crustal conductive layer is dominated by friction sliding-type brittle fracturing. The high-resistivity mid-crust is inferred to be high-viscosity metamorphic basement being intersected by deep fault. The plastic lower crust show significantly high-conductivity feature. Seismicity appears to be controlled by crustal rheological heterogeneity. Micro-earthquakes mainly distribute at the brittle-ductile transition zones as indicated by high- to low-resistivity interfaces or the high pore pressure fault zones while the epicenters of two giant destructive historical earthquakes occur within the high-resistivity and therefore high-strength blocks near the inferred rheological interfaces. The lithosphere-scale lateral rheological heterogeneity along the profile can also be illustrated. The crust and upper mantle beneath the Ordos Block, Lüliang Mountains and Taihang Mountains are of high rheological strength as indicated by large-scale high-resistivity zones while a significant high-conductivity, lithosphere-scale weak zone exists beneath the eastern margin of the Lin
机译:摘要“>我们以新生代板内山西裂谷最活跃的部分临汾盆地为例,展示了如何使用大地电磁数据来约束板内构造带的岩石圈流变不均匀性。电阻率模型与之前的流变数值模拟相结合,显示电阻率与流变强度之间有很好的相关性,即表明导电性增强的机制也可能是粘度降低的原因。临汾盆地下地壳在电阻率和流变学方面均表现出整体分层特征。地壳最上层的导电层以摩擦滑动型脆性断裂为主。高电阻率中地壳推断为与深断裂相交的高粘度变质基底。塑性下地壳具有明显的高导电性特征。地震活动似乎受地壳流变不均匀性的控制。微地震主要分布在高-低电阻率界面或高孔隙压力断层带指示的脆-韧性过渡带,而两次巨大破坏性历史地震的震中发生在高电阻率范围内,因此高强度块体靠近推断的流变界面。沿剖面的岩石圈尺度横向流变非均质性也可以说明。鄂尔多斯地块、吕梁山和太行山下方的地壳和上地幔具有高流变强度,大型高电阻率带表明了这一点,而在林间带东缘下方存在一个显著的高导电性岩石圈规模的软弱带

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