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首页> 外文期刊>Geophysical Research Letters >Upper mantle shear and compressional velocity structure of the Central US Craton: Shear wave low-velocity zone and anisotropy
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Upper mantle shear and compressional velocity structure of the Central US Craton: Shear wave low-velocity zone and anisotropy

机译:美国中部克拉通的上地幔剪切和压缩速度结构:剪切波低速带和各向异性

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摘要

One-dimensional upper mantle velocity structure is estimated by modeling P, SV and SH body-waveforms sampling the central United States. The resulting model features a thick mantle lid with a positive velocity gradient. A significant shear wave low-velocity zone (6% velocity reduction) is required below the lid however the compressional velocities are not reduced. The paths studied lie along the fast axes of teleseismic shear wave splitting measurements and absolute plate motion. We observe splitting of upper mantle refracted shear-waves, with the transverse component slow relative to the radial component. In order to fit the shear wave arrivals and satisfy teleseismic shear-wave splitting observations we infer azimuthal anisotropy (maximum 1.6%) distributed throughout the mantle lid and low-velocity zone, with increasing anisotropy with depth. [References: 17]
机译:一维上地幔速度结构是通过对美国中部采样的P,SV和SH体波形建模来估计的。生成的模型具有厚的幔盖,具有正的速度梯度。盖子下方需要一个较大的剪切波低速区(速度降低6%),但压缩速度不会降低。研究的路径沿着远震剪切波分裂测量和板块绝对运动的快轴。我们观察到上地幔折射剪切波分裂,横向分量相对于径向分量慢。为了拟合切变波的到来并满足远震切变波分裂的观察,我们推论整个地幔盖和低速带分布的方位各向异性(最大1.6%),随着深度的增加各向异性不断增加。 [参考:17]

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