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首页> 外文期刊>Russian Geology and Geophysics >The lithospheric structure of the Central and Southern Tien Shan: MTS data correlated with petrology and laboratory studies of lower-crust and upper-mantle xenoliths
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The lithospheric structure of the Central and Southern Tien Shan: MTS data correlated with petrology and laboratory studies of lower-crust and upper-mantle xenoliths

机译:天山中部和南部的岩石圈结构:MTS数据与下地壳和上地幔异岩的岩石学和实验室研究相关

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摘要

Magnetotelluric soundings (MTS) in the Kyrgyz Tien Shan along 74° and 76° E profiles reveal conductors in the crust which delineate the boundaries of the At-Bashi accretionary-collisional zone and the Issyk-Kul microcontinent. Correlated to earthquake converted-wave patterns (v P) along the MANAS profile collected in 2007, the geoelectric model for the At-Bashi zone lends support to the hypothesis that the position and dip of large thrust sheets, as well as the way and direction of exhumation of eclogites in this zone, are similar to those in Northwest China. Petrological analysis, geothermobarometry, and elastic P-wave velocities measured in laboratory on lower-crust and upper-mantle xenoliths indicate that at the time when the xenoliths were dragged to the surface about 70 Ma ago, the Moho was 20 km shallower than now (35 km against 55 km) and the heat flux was 20 mW/m ~2 higher (80 against 60 mW/m ~2).
机译:吉尔吉斯斯坦天山沿74°和76°E剖面的大地电磁测深(MTS)揭示了地壳中的导体,该导体描绘了At-Bashi增生碰撞带和Issyk-Kul微大陆的边界。与2007年收集的MANAS剖面上的地震转换波模式(v P)相关,At-Bashi地区的地电模型为大推力板的位置和倾角以及方式和方向的假设提供了支持。该地区的榴辉岩化石与中国西北地区相似。在实验室测量的下地壳和上地幔异种岩的岩石学分析,地热气压法和弹性P波速度表明,大约在70 Ma之前将异种岩拖到地表时,莫霍面比现在浅了20公里( 35 km对55 km),并且热通量高20 mW / m〜2(80对60 mW / m〜2)。

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