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Small-scale upper mantle convection and orogeny of Tianshan Mountains in China

机译:中国天山小规模上地幔对流和造山作用

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In this study, from the travel time data recorded in the Tianshan passive seismic array experiment, we present the P-wave velocity structure of the upper mantle down to 660 km along the Kuqa-Kuitun profile in terms of seismic tomography technique. Based on the P-wave velocity model, we derive the corresponding 2D upper mantle density model. The 2D small-scale convection of the upper mantle underneath the Tianshan Mountains in China driven by the density anomalies is simulated using the hybrid finite element method combining with the marker-in-cell technique. The main features of the upper mantle convection and the reciprocation between the convection and mountain building are investigated. The results manifest that (1) in the upper mantle underneath the Junggar basin and North Tianshan exists a counterclockwise convection, which scale is ~ 500 km; (2) underneath the Tarim basin and South Tianshan exists a clockwise northward convection, which is relatively weak; (3) the convective velocity at the top of the upper mantle underneath the Tianshan Mountains in China should not be less than 20 mm/a, while considering the dependent of convective velocity on the viscosity; (4) the northward extrusion of the Tarim block plays a key role in the Cenozoic Tianshan mountain building and the present-day tectonic deformation of the Tianshan range is related closely to the upper mantle convection; and (5) the northward subduction of the Tarim block does not influence obviously the upper mantle convection.
机译:在这项研究中,根据在天山被动地震阵列实验中记录的传播时间数据,我们利用地震层析成像技术给出了沿库车-奎屯剖面向下至660 km的上地幔的P波速度结构。基于纵波速度模型,我们推导了相应的二维上地幔密度模型。利用混合有限元方法结合单元标记技术,模拟了由密度异常驱动的中国天山下地幔的二维小尺度对流。研究了上地幔对流的主要特征以及对流与山区建筑之间的往复运动。结果表明:(1)在准gar尔盆地和北天山下的上地幔存在逆时针对流,规模约为〜500 km; (2)在塔里木盆地和天山南下,存在一个顺时针向北的对流,相对较弱; (3)在考虑对流速度对黏度的影响的基础上,中国天山下方上地幔顶部的对流速度应不小于20mm / a。 (4)塔里木地块的北向挤压作用在新生代的天山建筑中起着关键作用,而天山山脉现今的构造变形与上地幔对流密切相关; (5)塔里木块向北俯冲对上地幔对流没有明显影响。

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