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The three-dimensional shear velocity structure of lithosphere in the southern Baikal rift system and its surroundings

机译:贝加尔湖南部裂谷系统岩石圈的三维切变速度结构及其周围环境

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The three-dimensional shear velocity lithospheric structure at depths from 0 to 70 km beneath the southern Baikal rift system and its surroundings has been imaged by inversion of P-to-SV receiver functions from 46 digital stations operated in two teleseismic international projects in southern Siberia and Mongolia. The receiver functions were determined from teleseismic P waveforms and inverted to obtain depth dependences of S velocities at each station which were related to tectonic structures. The computed vertical and horizontal sections of the 3D shear velocity model imaged a transition from relatively thin crust of the southern Siberian craton to thicker crust in the folded area south and southeast of Lake Baikal, with a local zone of thin crust right underneath the South Baikal basin. The velocity structure beneath the Baikal rift, the mountains of Transbaikalia, Mongolia, and the southern craton margin includes several low-velocity zones at different depths in the crust. Some of these zones may record seismic anisotropy associated with mylonite alignment along large thrusts.
机译:在贝加尔湖南部裂谷系统及其周围0至70 km深度处的三维剪切速度岩石圈结构通过西伯利亚南部两个远程地震国际项目中46个数字台站的P到SV接收机功能的反演成像和蒙古。接收器的功能是根据远震P波形确定的,并将其反相以获得与构造结构有关的每个站S速度的深度依赖性。计算出的3D剪切速度模型的垂直和水平剖面显示了从西伯利亚克拉通南部相对较薄的地壳到贝加尔湖南部和东南部折叠区域中较厚的地壳的过渡,南贝加尔湖的正下方有一个较薄的地壳区域盆地。贝加尔湖裂谷,Transbaikalia山脉,蒙古和克拉通南部之下的速度结构包括地壳中不同深度的几个低速带。这些区域中的某些区域可能记录了与沿着大推力的镍铁矿排列有关的地震各向异性。

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