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Slab stagnation due to a reduced viscosity layer beneath the mantle transition zone

机译:板坯停滞由于地幔过渡区下面的粘度层降低

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The linear structures of seismically fast anomalies, often interpreted as subducted slabs, in the southern Asia and circum-Pacific lower mantle provided strong evidence for the whole mantle convection model. However, recent seismic studies have consistently shown that subducted slabs are deflected horizontally for large distances in mantle transition zone in the western Pacific and other subduction zones, suggesting that the slabs meet significant resistance to their descending motion and become stagnant in the transition zone. This poses challenges to the whole mantle convection model and also brings the origin of stagnant slabs into question. Here, using a global mantle convection model with realistic spine-post-spinel phase change (-2 MPa K-1 Clapeyron slope) and plate motion history, we demonstrate that the observed stagnant slabs in the transition zone and other slab structures in the lower mantle can be explained by the presence of a thin, weak layer at the phase change boundary that was suggested by mineral physics and geoid modelling studies. Our study also shows that the stagnant slabs mostly result from subduction in the past 20-30 million years, confirming the transient nature of slab stagnation and phase change dynamics on timescales of tens of millions of years from previous studies.
机译:地震快速异常的线性结构,通常被解释为底层板块,南亚和循环下的地幔提供了强有力的,为整个地幔对流模型提供了强有力的证据。然而,最近的地震研究一致地表明,底板的板坯水平地偏转,用于西太平洋和其他俯冲区域的地幔过渡区的大距离,表明板坯对其下降运动的显着抵抗力并在过渡区内停滞不前。这对整个地幔对流模型带来了挑战,并带来了滞留板的起源。这里,使用具有现实脊柱后尖晶石相变(-2MPa k-1爪坡坡)和板式运动历史的全球地幔对流模型,我们证明了在过渡区中观察到的停滞板和较低的其他板坯结构可以通过在矿物质理和大溪地建模研究提出的相变边界处存在薄,弱层的薄片。我们的研究还表明,过去20-30万年的俯冲产生了停滞的板块,确认板坯停滞和相变动力学的瞬态性质从以前的研究到数百万年数百万的时间。

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