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The Lithosphere- Asthenosphere Boundary

机译:岩石圈-软流圈边界

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摘要

Seismological models of upper-mantle structure are providing new constraints on the physical and chemical properties that differentiate the lithosphere from the asthenosphere. A wide variety of studies are consistent with an oceanic lithosphere that corresponds to a dry, chemically depleted layer over a hydrated, fertile asthenosphere. At the lithosphere-asthenosphere boundary beneath oceans and many Phanerozoic continental regions, observed seismic velocity gradients require a contrast in mantle hydration, fertility, and/or melt content, perhaps in combination with a vertical gradient in velocity anisotropy. Beneath cratons, evidence is growing for a deeper—but globally ubiquitous—asthenosphere. Some studies conclude that the cratonic lithosphere-asthenosphere boundary is gradual enough to be matched by a purely thermal gradient, whereas others indicate a more rapid transition and a contrast in composition or perhaps melt content.
机译:上地幔结构的地震学模型为将岩石圈与软流圈区分开的物理和化学性质提供了新的限制。各种各样的研究与海洋岩石圈相一致,海洋岩石圈对应于水合肥沃软流圈上干燥的化学贫化层。在海洋和许多生代大陆区域下方的岩石圈-软流圈边界处,观测到的地震速度梯度要求在地幔水化,肥力和/或熔体含量方面形成对比,也许还要结合垂直各向异性的速度各向异性。在克拉通下方,证据越来越多,但深度在全球范围内普遍存在。一些研究得出的结论是,克拉通岩石圈-软流圈的边界是足够渐进的,可以与纯热梯度匹配,而另一些研究则表明,过渡更快,成分或熔体含量也相反。

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