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Compression-extension transition of continental crust in a subduction zone: A parametric numerical modeling study with implications on Mesozoic-Cenozoic tectonic evolution of the Cathaysia Block

机译:俯冲带内地壳的压缩扩展作用过渡:对华夏地块中新生代构造演化的参数化数值模拟研究

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摘要

The Cathaysia Block is located in southeastern part of South China, which situates in the west Pacific subduction zone. It is thought to have undergone a compression-extension transition of the continental crust during Mesozoic-Cenozoic during the subduction of Pacific Plate beneath Eurasia-Pacific Plate, resulting in extensive magmatism, extensional basins and reactivation of fault systems. Although some mechanisms such as the trench roll-back have been generally proposed for the compression-extension transition, the timing and progress of the transition under a convergence setting remain ambiguous due to lack of suitable geological records and overprinting by later tectonic events. In this study, a numerical thermo-dynamical program was employed to evaluate how variable slab angles, thermal gradients of the lithospheres and convergence velocities would give rise to the change of crustal stress in a convergent subduction zone. Model results show that higher slab dip angle, lower convergence velocity and higher lithospheric thermal gradient facilitate the subduction process. The modeling results reveal the continental crust stress is dominated by horizontal compression during the early stage of the subduction, which could revert to a horizontal extension in the back-arc region, combing with the roll-back of the subducting slab and development of mantle upwelling. The parameters facilitating the subduction process also favor the compression-extension transition in the upper plate of the subduction zone. Such results corroborate the geology of the Cathaysia Block: the initiation of the extensional regime in the Cathaysia Block occurring was probably triggered by roll-back of the slowly subducting slab.
机译:华夏地块位于华南东南部,位于西太平洋俯冲带。人们认为,在欧亚大陆-太平洋板块之下的太平洋板块俯冲期间,中生代-新生界经历了大陆壳的压缩-延伸过渡,导致了广泛的岩浆作用,伸展盆地和断裂系统的重新活化。尽管通常针对压缩-延伸过渡提出了一些机制,例如沟槽回滚,但是由于缺乏合适的地质记录和后期构造事件的套印,在收敛条件下过渡的时间和进度仍然不明确。在这项研究中,采用数值热力学程序来评估平板斜角,岩石圈的热梯度和会聚速度如何引起会聚俯冲带中地壳应力的变化。模型结果表明,较高的平板倾角,较低的收敛速度和较高的岩石圈热梯度有利于俯冲过程。模拟结果表明,俯冲初期,大陆地壳应力以水平压缩为主,与俯冲板块的回滚和地幔上涌的发展相结合,可以在弧后区域恢复成水平延伸。 。有利于俯冲过程的参数也有利于俯冲带上板的压缩-延伸过渡。这样的结果证实了华夏地块的地质:华夏地块发生伸展机制的开始可能是由缓慢俯冲板块的后退所触发的。

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