首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Dynamic Evolution of Induced Subduction Through the Inversion of Spreading Ridges
【24h】

Dynamic Evolution of Induced Subduction Through the Inversion of Spreading Ridges

机译:通过蔓延脊的反转诱导俯冲的动态演变

获取原文
获取原文并翻译 | 示例
       

摘要

Lithospheric weakness is essential in subduction initiation. Spreading ridges are divergent plate boundaries which may represent lithospheric weakness and promote subduction initiation. Natural examples of ridge-inversed subduction along spreading ridges have been proposed (e.g., the Proto-South China Sea subduction). Although, the dynamic evolution of ridge-inversed subduction has been investigated by geodynamical numerical modeling previously, it remains obscure, especially the influence of the thermal state and geometries of spreading ridges on subduction initiation and dynamic evolution. We establish two-dimensional thermomechanical coupled numerical models to simulate the dynamic evolution of forced subduction along spreading ridges, and quantify the influence of four major parameters on subduction development (i.e., the spreading rate and cooling age of spreading ridges, forced convergence rate and asymmetric ridge geometry). Our model results suggest the following findings. (1) The cooling age of spreading ridges and the forced convergence rate are the most important parameters controlling ridge-inversed subduction initiation, and the thresholds of the two parameters are revealed, that is, subduction may easily initiate with a cooling age less than similar to 20 Myr and a forced convergence rate lager than similar to 4 cm/yr. (2) The spreading rate of ridges prior to forced convergence and asymmetric ridge geometries play a secondary role in subduction development. (3) Ridge-inversed subduction of the Proto-South China Sea along the Palawan spreading ridge was proposed geologically, and our numerical modeling results support this scenario.
机译:岩石圈软弱在俯冲起始中至关重要。扩张脊是分散的板块边界,可能代表岩石圈软弱,并促进俯冲起始。已经提出了沿扩张山脊逆脊俯冲的自然例子(例如,原南海俯冲)。尽管之前已经通过地球动力学数值模拟研究了脊逆俯冲的动力学演化,但它仍然不清楚,尤其是扩张脊的热状态和几何形状对俯冲起始和动力学演化的影响。我们建立了二维热力耦合数值模型来模拟沿扩张脊强迫俯冲的动态演化,并量化了四个主要参数对俯冲发展的影响(即扩张脊的扩张速度和冷却时间、强迫收敛速度和不对称脊几何)。我们的模型结果表明了以下发现。(1) 扩张脊的冷却年龄和强迫收敛速度是控制脊反转俯冲起始的最重要参数,并揭示了这两个参数的阈值,即,当冷却年龄小于20 Myr且强迫收敛速度大于4 cm/yr时,俯冲可能很容易开始。(2)强迫收敛之前的脊扩张速度和不对称脊几何形状在俯冲发展中起次要作用。(3) 从地质学角度提出了原南海沿着巴拉望扩张脊的逆脊俯冲,我们的数值模拟结果支持这一设想。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号