不对称弧后延伸的模拟建模

W. Schellart, G. Lister, M. Jessell
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引用次数: 43

摘要

弧后伸展是在俯冲板的折合线后退过程中,以整体会聚的方式在上覆板块中发生的。大量弧后盆地呈现出不对称的几何形状和内部构造,即从弧的一端向另一端延伸的量增加。我们提出了具有不同初始流变性的覆盖岩石圈不对称弧后伸展的三维模拟模拟结果。结果表明:随着岩石圈脆粘强度(BS/VS)的增大,断层密度量值减小,弧后区域变形模式的不对称性增大;变形的面积范围主要取决于脆性强度与浮力的比值(BS/BF),即该比值越大,变形面积越小。实验结果与几个弧-弧-后弧体系进行了对比,这些体系表现出较大的构造不对称性(汤加弧、千岛弧、新赫布里底弧、琉球弧),但构造变形类型各不相同。这些差异主要是弧后盆地发育阶段、俯冲背景(洋-洋或洋-陆)和上覆岩石圈流变学差异的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analogue modelling of asymmetrical back-arc extension
Back-arc extension takes place in the overriding plate in an overall convergent setting during retreat of the hinge-line of the subducting slab. A large number of back-arc basins display a geometry and internal structure that is asymmetric, i.e. where the amount of extension increases from one end of the arc to the other. We present the results of 3-dimensional analogue modelling of asymmetric back-arc extension of an overriding lithosphere with a varying initial rheology. The results show that with increasing lithospheric brittle to viscous strength (BS/VS), the fault density decreases in magnitude, while the asymmetry in deformation pattern in the back-arc region increases. The area extent of deformation is mainly dependent on the ratio of brittle strength to buoyancy force (BS/BF), i.e. the larger the ratio, the smaller the area of deformation. The experimental results have been compared with several arc - back-arc systems, which display a relatively large amount of structural asymmetry (Tonga Arc, Kuril Arc, New Hebrides Arc, Ryukyu arc) but a varying style of tectonic deformation. These differences are mainly the result of the stage of opening up of the back-arc basin, the subduction setting (ocean-ocean or ocean-continent) and difference in rheology of the overriding lithosphere.
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