首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Absolute plate motions constrained by shear wave splitting orientations with implications for hot spot motions and mantle flow
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Absolute plate motions constrained by shear wave splitting orientations with implications for hot spot motions and mantle flow

机译:受剪切波分裂方向限制的绝对板块运动对热点运动和地幔流的影响

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Here, I present a new absolute plate motion model of the Earth's surface, determined from the alignment of present-day surface motions with 474 published shear wave (i.e., SKS) splitting orientations. When limited to oceanic islands and cratons, splitting orientations are assumed to reflect anisotropy in the asthenosphere caused by the differential motion between lithosphere and mesosphere. The best fit model predicts a 0.2065°/Ma counterclockwise net rotation of the lithosphere as a whole, which revolves around a pole at 57.6°S and 63.2°E. This net rotation is particularly well constrained by data on cratons and/or in the Indo-Atlantic region. The average data misfit is 19° and 24° for oceanic and cratonic areas, respectively, but the normalized root-mean-square misfits are about equal at 5.4 and 5.2. Predicted plate motions are very consistent with recent hot spot track azimuths (<8° on many plates), except for the slowest moving plates (Antarctica, Africa, and Eurasia). The difference in hot spot propagation vectors and plate velocities describes the motion of hot spots (i.e., their underlying plumes). For most hot spots that move significantly, the motions are considerably smaller than and antiparallel to the absolute plate velocity. Only when the origin depth of the plume is considered can the hot spot motions be explained in terms of mantle flow. The results are largely consistent with independent evidence of subasthenospheric mantle flow and asthenospheric return flow near spreading ridges. The results suggest that, at least where hot spots are, the lithosphere is decoupled from the mesosphere, including in western North America.
机译:在这里,我提出了一个新的地球表面绝对板块运动模型,该模型是根据当今表面运动与474个公布的剪切波(即SKS)分裂方向的对准确定的。当限于大洋岛屿和克拉通时,假定分裂的方向反映了由岩石圈和中间层之间的差分运动引起的软流圈的各向异性。最佳拟合模型预测整个岩石圈的逆时针方向净旋转为0.2065°/ Ma,该旋转在57.6°S和63.2°E的极点处旋转。这种净旋转特别受到克拉通和/或印度洋-大西洋地区数据的限制。大洋和克拉通地区的平均数据拟合度分别为19°和24°,但是归一化的均方根拟合度大约等于5.4和5.2。除了运动最慢的板块(南极洲,非洲和欧亚大陆)以外,预计的板块运动与最近的热点轨迹方位角(许多板上的<8°)非常一致。热点传播矢量和板速度的差异描述了热点的运动(即其下伏羽流)。对于大多数运动显着的热点,​​其运动明显小于并反平行于绝对板速度。仅当考虑羽流的起源深度时,才能根据地幔流动解释热点运动。该结果在很大程度上与软流圈以下的地幔流和散布脊附近的软流圈回流的独立证据相符。结果表明,至少在热点地区,岩石圈与中间层是分离的,包括北美西部。

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