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Teleseismic P-wave tomography and the upper mantle structure of the central Tien Shan orogenic belt

机译:天山中部造山带的远震P波层析成像和上地幔结构

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摘要

In this study, an updated version of the teleseismic tomographic method is applied to 7176 high-quality first P-wave arrivals from four combined seismic networks to determine the detailed deep structure under the central Tien Shan. Our high-resolution tomographic model not only displays the general features contained in the previous models, but also reveals some new features. A much narrower tilted columnar high-velocity anomaly with a diameter of about 60 km below 150-200 km depth under the Tien Shan extends down to the mantle transition zone, suggesting the breaking- and dropping-off of the collided portions of the southward underthrusting Kazakh Shield and the northward underthrusting Tarim Basin. Prominent low-velocity (low-V) anomalies above 150-200 km depth beneath the Tien Shan may be related to two branches of ascending hot anomalies. One rises upward from the lower mantle beneath the Tarim Basin, while the other rises up from the top of the mantle transition zone beneath the western Kazakh Shield. These results suggest that the underthrusting of the Tarim Basin and Kazakh Shield and the upwelling of hot anomalies indeed play an important role in the mountain building of the central Tien Shan. These dynamic processes might be related to the collision of the Indian plate with Eurasian plate. (c) 2007 Elsevier B.V. All rights reserved.
机译:在这项研究中,将远程地震层析成像方法的更新版本应用于来自四个组合地震网络的7176个高质量的第一个P波到达,以确定天山中心下方的详细深层结构。我们的高分辨率断层扫描模型不仅显示了以前模型中包含的一般功能,而且还揭示了一些新功能。在天山下150-200 km深度以下,直径约60 km的更窄的倾斜的柱状高速异常延伸到地幔过渡带,这表明南侧下冲作用的碰撞部分破裂和下沉。哈萨克盾和塔里木盆地北下。天山下150-200 km深度以上的明显低速(低V)异常可能与上升的热异常的两个分支有关。一个从塔里木盆地下面的下地幔向上上升,另一个从西哈萨克盾构下的地幔过渡带的顶部上升。这些结果表明,塔里木盆地和哈萨克盾构的逆冲作用和热异常的上升确实在天山中部山区的建设中起着重要作用。这些动态过程可能与印度板块与欧亚板块的碰撞有关。 (c)2007 Elsevier B.V.保留所有权利。

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