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Can Lower Mantle Slab-like Seismic Anomalies beudExplained by Thermal Coupling Between the Upperudand Lower Mantles?

机译:可以降低地幔板状地震异常通过上部之间的热耦合来解释和下地幔?

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摘要

Below subduction zones, high resolution seismic tomographic models resolve fast anomalies that often extend into the deep lower mantle. These anomalies are generally interpreted as slabs penetrating through the 660-km seismic discontinuity, evidence in support of whole-mantle convection. However, thermal coupling between two ow systems separated by an impermeable interface might provide an al ternative explanation of the tomographic results. We have tested this hypothesis within the context of an axisymmet ric model of mantle convection in which an impermeable boundary is imposed at a depth of 660 km. When an increase in viscosity alone is imposed across the impermeable interface, our results demonstrate the dominant role of mechanical coupling between shells, producing lower mantle upwellings (downwellings) below upper mantle downwellings (upwellings). However, we find that the effect of mechanical coupling can be significantly weakened if a narrow low viscosity zone exists beneath the 660-km discontinuity. In such a case, both thermally induced `slabs' in the lower mantle and thermally activated plumes that rise from the upper/lower mantle boundary are observed even though mass transfer between the shells does not exist.
机译:在俯冲带以下,高分辨率地震层析成像模型解决了通常延伸到下地幔深部的快速异常现象。通常将这些异常解释为平板穿过660公里的地震不连续性,这是支持整个地幔对流的证据。但是,由不可渗透的界面隔开的两个流系统之间的热耦合可能会提供断层扫描结果的另一种解释。我们在地幔对流的轴对称模型的上下文中测试了该假设,其中在660 km的深度处施加了不可渗透的边界。当在整个不可渗透界面上单独施加粘度增加时,我们的结果证明了壳之间机械耦合的主要作用,从而在上地幔向下井(上升井)下方产生了下地幔向上涌水(downwells)。但是,我们发现,如果在660公里的不连续面下方存在一个狭窄的低粘度区域,则机械耦合的作用会大大减弱。在这种情况下,即使不存在壳之间的传质,也观察到下地幔中的热诱发“平板”和从上/下地幔边界升起的热活化羽流。

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