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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Deep crustal structure of an arc-continent collision: Constraints from seismic traveltimes in central Taiwan and the Philippine Sea
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Deep crustal structure of an arc-continent collision: Constraints from seismic traveltimes in central Taiwan and the Philippine Sea

机译:弧-大陆碰撞的深层地壳结构:台湾中部和菲律宾海地震时程的限制

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The collision of continental crust of the Eurasian Plate with the overriding Luzon Arc in central Taiwan has led to compression, uplift, and exhumation of rocks that were originally part of the Chinese rifted margin. Though the kinematics of the fold-thrust belt on the west side of the orogen has been described in detail, the style of deformation in the lower crust beneath Taiwan is still not well understood. In addition, the fate of the Luzon Arc and Forearc in the collision is also not clear. Compressional wave arrival times from active-source and earthquake seismic data from the Taiwan Integrated Geodynamic Research program constrain the seismic velocity structure of the lithosphere along transect T5, an east-west corridor in central Taiwan. The results of our analysis indicate that the continental crust of the Eurasian margin forms a broad crustal root beneath central Taiwan, possibly with a thickness of 55km. Compressional seismic velocities beneath the Central Range of Taiwan are as low as 5.5km/s at 25km depth, whereas P wave seismic velocities in the middle crust on the eastern flank of the Taiwan mountain belt average 6.5-7.0km/s. This suggests that the incoming sediments and upper crust of the Eurasian Plate are buried to midcrustal depth in the western flank of the orogen before they are exhumed in the Central Range. To the east, the Luzon Arc and Forearc are deformed beneath the Coastal Range of central Taiwan. Fragments of the rifted margin of the South China Sea that were accreted in the early stages of the collision form a new backstop that controls the exhumation of Eurasian strata to the west in this evolving mountain belt.
机译:欧亚板块的大陆壳与台湾中部凌驾的吕宋岛弧相撞,导致原本属于中国裂谷边缘的岩石被压缩,抬升和掘出。尽管已详细描述了造山带西侧的褶皱冲断带的运动学,但对台湾下方的下地壳的变形方式仍知之甚少。另外,吕宋岛弧度和前臂在碰撞中的命运也不清楚。来自主动源的压缩波到达时间和来自台湾综合地球动力学研究计划的地震地震数据约束了沿台湾中部东西走廊T5断面的岩石圈地震速度结构。我们的分析结果表明,欧亚大陆边缘的大陆壳在台湾中部下方形成了广阔的地壳根,厚度可能为55km。在25 km深度处,台湾中部山脉下方的压缩地震速度低至5.5 km / s,而在台湾山脉东侧的中地壳中的P波地震速度平均为6.5-7.0 km / s。这表明,进入欧亚板块的沉积物和上地壳被埋入造山带西翼的中地壳深处,然后才在中部山脉被挖掘出来。在东部,吕宋弧和前臂在台湾中部沿海山脉以下变形。在碰撞的早期阶段,南海裂谷所形成的碎片形成了一个新的支撑层,控制着这个不断发展的山区向西的欧亚岩层的挖掘。

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