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Multi-scale dynamics and rheology of mantle flow with plates

机译:板块地幔流动的多尺度动力学和流变学

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Fundamental issues in our understanding of plate and mantle dynamics remain unresolved, including the rheology and state of stress of plates and slabs; the coupling between plates, slabs and mantle; and the flow around slabs. To address these questions, models of global mantle flow with plates are computed using adaptive finite elements, and compared to a variety of observational constraints. The dynamically consistent instantaneous models include a composite rheology with yielding, and incorporate details of the thermal buoyancy field. Around plate boundaries, the local resolution is 1km, which allows us to study highly detailed features in a globally consistent framework. Models that best fit plateness criteria and plate motion data have strong slabs with high stresses. We find a strong dependence of global plate motions, trench rollback, net rotation, plateness, and strain rate on the stress exponent in the nonlinear viscosity; the yield stress is found to be important only if it is smaller than the ambient convective stress. Due to strong coupling between plates, slabs, and the surrounding mantle, the presence of lower mantle anomalies affect plate motions. The flow in and around slabs, microplate motion, and trench rollback are intimately linked to the amount of yielding in the subducting slab hinge, slab morphology, and the presence of high viscosity structures in the lower mantle beneath the slab.
机译:我们对板和地幔动力学的理解中的基本问题仍然没有解决,包括板和板的流变学和应力状态;板,板与地幔之间的耦合;以及平板周围的流动。为了解决这些问题,使用自适应有限元计算了带有板块的全球地幔流动模型,并与各种观测约束条件进行了比较。动态一致的瞬时模型包括具有屈服的复合流变学,并包含了热浮力场的细节。围绕板块边界,局部分辨率为1km,这使我们能够在全球一致的框架中研究高度详细的特征。最适合平板度标准和平板运动数据的模型具有高应力的坚固平板。我们发现,整体板的运动,沟槽回滚,净旋转,板厚和应变率与非线性粘度中的应力指数有很大的相关性。仅当屈服应力小于环境对流应力时,屈服应力才是重要的。由于板,板和周围地幔之间的强耦合,下地幔异常的存在会影响板的运动。平板内部和周围的流动,微孔板运动和沟槽回滚与俯冲平板铰链的屈服量,平板形态以及平板下方下部地幔中高粘度结构的存在密切相关。

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