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Effects of plate and slab viscosities on the geoid

机译:平板和平板粘度对大地水准面的影响

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摘要

The effects of plate rheology (strong plate interiors and weak plate margins) and stiff subducted lithosphere (slabs) on the geoid and plate motions, considered jointly, are examined with three-dimensional spherical models of mantle flow. Buoyancy forces are based on the internal distribution of subducted lithosphere estimated from the last 160 Ma of subduction history. While the ratio of the lower mantle/upper mantle viscosity has a strong effect on the long-wavelength geoid, as has been shown before, we find that plate rheology is also significant and that its inclusion yields a better geoid model while simultaneously reproducing basic features of observed plate motion. Slab viscosity can strongly affect the geoid, depending on whether a slab is coupled to the surface. In particular, deep high-viscosity slabs beneath the northern Pacific that are disconnected from the surface as a result of subduction history produce significant long-wavelength geoid highs that differ from the observation. This suggests that slabs in the lower mantle may be not as stiff as predicted from a simple thermlaly activated rheology, if the slab model is accurate.
机译:结合考虑的地幔流动的三维球形模型,研究了板流变学(强板内部和薄板边缘)和坚硬俯冲岩石圈(板)对大地水准面和板运动的影响。浮力是基于俯冲历史的最后160 Ma估算的俯冲岩石圈的内部分布。如前所述,虽然下地幔/上地幔粘度之比对长波长大地水准面有很强的影响,但我们发现板流变学也很重要,并且它的夹杂物产生了更好的大地水准面模型,同时再现了基本特征观察板运动。板坯的粘度会严重影响大地水准面,具体取决于板坯是否耦合至表面。特别是,由于俯冲历史,北太平洋下方的深层高粘度平板与地表断开,产生了明显的长波大地水准面高点,与观测结果不同。这表明,如果平板模型是准确的,则下地幔中的平板可能不如简单的热活化流变学所预测的那样坚硬。

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