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Heterogeneities of the Shear Wave Attenuation Field in the Lithosphere of East Tien Shan and Their Relationship with Seismicity

机译:东天山岩石圈剪切波衰减场的非均质性及其与地震的关系

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摘要

The shear wave attenuation field in the lithosphere of Eastern Tien Shan has been mapped. The method based on analysis of the ratio between amplitudes of Sn and Pn waves was used. On aggregate, about 120 seismograms made at the Makanchi station (MKAR), mainly in the period of 2003-2009, at epicentral distances of about 350-1200 km were analyzed. It was found that shear wave attenuation in the lithosphere of Eastern Tien Shan is weaker than that in the region of Central Tien Shan. This agrees with the fact that the rate of deformation of the Earth's crust in Eastern Tien Shan is lower (based on GPS data), as is the seismicity level, in comparison to Central Tien Shan. The zones of high attenuation, where strong earthquakes with M>7.0 have not occurred for the last 200 years, have been identified: first of all, these are the area west of Urumqi and that of the Lop Nur test site. It is suggested that in the first zone, where an annular seismicity structure has formed over the last 30 years, a strong earthquake may be being prepared. The second zone is most probably related to the uplift of mantle fluids resulting from a long-term intensive technogenic effect, analogous to what has occurred in areas of other nuclear test sites (Nevada and Semipalatinsk).
机译:已经绘制了天山东部岩石圈的剪切波衰减场。使用基于Sn和Pn波的振幅之比的分析的方法。总体上,分析了主要在2003-2009年期间在Makanchi站(MKAR)进行的约120幅地震图,震中距离约为350-1200 km。发现天山东部岩石圈的剪切波衰减弱于天山中部地区。这与以下事实是一致的:与天山中部相比,东天山中地壳的变形率较低(基于GPS数据),而地震活动水平较低。已经确定了高衰减区域,在过去的200年中没有发生过M> 7.0的强地震:首先,这些区域是乌鲁木齐以西和罗布泊试验场所在的区域。建议在过去30年中形成环形地震活动结构的第一个区域中,可能正在准备发生强烈地震。第二个区域很可能与长期密集的技术作用引起的地幔流体隆升有关,这类似于其他核试验场址(内华达州和塞米巴拉金斯克)所发生的情况。

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  • 来源
    《Doklady Earth Sciences》 |2012年第2期|p.292-295|共4页
  • 作者单位

    Schmidt Joint Institute of Physics of the Earth, Russian Academy of Sciences, Moscow, Russia,Institute of Geophysical Research, National Nuclear Center of the Republic of Kazakhstan, Almaty, Kazakhstan;

    Institute of Geophysical Research, National Nuclear Center of the Republic of Kazakhstan, Almaty, Kazakhstan;

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