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Joint modeling of lithosphere and mantle dynamics elucidating lithosphere-mantle coupling

机译:岩石圈和地幔动力学的联合模型阐明了岩石圈-地幔耦合

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摘要

We provide new insights into the lithosphere-mantle coupling problem through a joint modeling of lithosphere dynamics and mantle convection and through comparison of model results with the high resolution velocity gradient tensor model along the Earth's plate boundary zones. Using a laterally variable effective viscosity lithosphere model, we compute depth integrated deviatoric stresses associated with both gravitational potential energy (GPE) differences and deeper mantle density buoyancy-driven convection. When deviatoric stresses from horizontal basal tractions, associated with deeper density buoyancy-driven convective circulation of the mantle, are added to those from GPE differences, the fit between the model deviatoric stress field and the deformation indicators improves dramatically in most areas of continental deformation. We find that the stresses induced by the horizontal tractions arising from deep mantle convection contribute approximately 50+ACU- of the magnitude of the Earth's deviatoric lithospheric stress field. We also demonstrate that lithosphere-asthenosphere viscosity contrasts and lateral variations within the lithospheric plate boundary zones play an important role in generating the right direction and magnitude of tractions that yield an optimal match between deviatoric stress tensor patterns and the deformation indicators.
机译:通过岩石圈动力学和地幔对流的联合建模,以及通过将模型结果与沿地球板块边界区域的高分辨率速度梯度张量模型进行比较,我们提供了有关岩石圈-地幔耦合问题的新见解。使用横向可变有效粘度岩石圈模型,我们计算与重力势能(GPE)差异和更深的地幔密度浮力驱动的对流相关的深度积分偏应力。当来自GPE差异的应力与来自更深密度浮力驱动的对流环流的水平基底牵引力产生的偏应力相加时,模型偏应力场与形变指标之间的拟合在大多数大陆形变区域都得到了显着改善。我们发现由深地幔对流引起的水平牵引引起的应力贡献了地球偏斜岩石圈应力场大小的大约50 + ACU-。我们还证明,岩石圈-软流圈的粘度对比和岩石圈板块边界区域内的横向变化在产生正确的牵引力方向和幅度方面发挥着重要作用,从而产生偏应力张量模式与变形指标之间的最佳匹配。

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