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Mantle rheology and the scaling of bending dissipation in plate tectonics

机译:板块构造中的地幔流变学和弯曲耗散的尺度

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Plate tectonics on Earth involves the bending deformation of plates at subduction zones, and because plates are generally considered to be stiff owning to the rheology of mantle minerals, the role of energy dissipation by plate bending in the global energy balance has been frequently debated in the recent literature. Here we consider how bending dissipation should scale with slab parameters such as dip angle, plate age, the radius of curvature, and plate velocity by systematically exploring the parameter space with instantaneous Stokes flow calculations. We derive the scaling of bending dissipation for a range of mantle viscosity functions, including pseudoplastic rheology with olivine flow laws. Our results indicate that, as we move away from the isoviscous case, the scaling gradually deviates from what has commonly been assumed in previous studies, most notably for the radius exponent, which exhibits more than threefold reduction and even a sign reversal in some cases. These modifications in scaling exponents originate in the complication of the deformation field caused by viscosity variations within the bending plate. Approximating the lithospheric rheology by a single effective viscosity in the dynamical models of subduction has been a common practice, but we suggest that such approximation may limit the geological relevance of modeling studies, in particular when estimating the significance of bending dissipation.
机译:地球上的板块构造涉及俯冲带板块的弯曲变形,并且由于地幔矿物的流变学,板块通常被认为是坚硬的,因此板块弯曲在全球能量平衡中耗散能量的作用经常被讨论。最近的文献。在这里,我们通过瞬时斯托克斯流计算系统地探索参数空间,来考虑弯曲耗散如何与平板参数(例如倾角,板龄,曲率半径和板速度)成比例。我们得出了一系列地幔粘度函数的弯曲耗散的比例,包括具有橄榄石流动定律的假塑性流变学。我们的结果表明,当我们远离等粘度情况时,缩放比例逐渐偏离先前研究中通常假定的范围,最明显的是半径指数,在某些情况下,其减小幅度超过三倍,甚至出现符号反转。缩放指数的这些修改源自弯曲板内粘度变化引起的变形场的复杂化。在俯冲动力学模型中用单个有效粘度近似岩石圈流变学是一种常见的做法,但是我们建议这种近似可能会限制建模研究的地质相关性,尤其是在估计弯曲耗散的重要性时。

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