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From the Academy: Mantle dynamics and seismic tomography

机译:来自学院:地幔动力学和地震层析成像

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摘要

Three-dimensional imaging of the Earth's interior, called seismic tomography, has achieved breakthrough advances in the last two decades, revealing fundamental geodynamical processes throughout the Earth's mantle and core. Convective circulation of the entire mantle is taking place, with subducted oceanic lithosphere sinking into the lower mantle, overcoming the resistance to penetration provided by the phase boundary near 650-km depth that separates the upper and lower mantle. The boundary layer at the base of the mantle has been revealed to have complex structure, involving local stratification, extensive structural anisotropy, and massive regions of partial melt. The Earth's high Rayleigh number convective regime now is recognized to be much more interesting and complex than suggested by textbook cartoons, and continued advances in seismic tomography, geodynamical modeling, and high-pressure–high-temperature mineral physics will be needed to fully quantify the complex dynamics of our planet's interior.
机译:在过去的二十年中,被称为地震层析成像的地球内部三维成像取得了突破性进展,揭示了整个地球地幔和核心的基本地球动力学过程。整个地幔的对流正在发生,俯冲的海洋岩石圈沉入下地幔,克服了将上,下地幔分隔开的650 km深度附近的相界所提供的抗渗透能力。地幔底部的边界层被发现具有复杂的结构,包括局部分层,广泛的结构各向异性和大量的部分熔融。现在,人们公认地球的高瑞利数对流方式比教科书中的漫画所提出的更有趣,更复杂,因此,地震层析成像,地球动力学模型以及高压-高温矿物物理学等方面的持续发展将需要对量化进行充分量化。地球内部的复杂动力。

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