首页> 外文期刊>Journal of the Geological Society of India >Numerical Modeling of Flow Patterns around Subducting Slabs in a Viscoelastic Medium and its Implications in the Lithospheric Stress Analysis
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Numerical Modeling of Flow Patterns around Subducting Slabs in a Viscoelastic Medium and its Implications in the Lithospheric Stress Analysis

机译:粘弹性介质中俯冲平板周围流动模式的数值模拟及其在岩石圈应力分析中的意义

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This paper presents results obtained from numerical model experiments to show different patterns of mantle flow produced by lithospheric movement in subduction zones. Using finite element models, based on Maxwell rheology (relaxation time similar to 10(11)S), we performed three types of experiments: Type 1, Type 2 and Type 3. In Type 1 experiments, the lithospheric slab subducts into the mantle by translational movement, maintaining a constant subduction angle. The experimental results show that the flow perturbations occur in the form of vortices in the mantle wedge, irrespective of subduction rate and angle. The mantle wedge vortex is coupled with another vortex below the subducting plate, which tends to be more conspicuous with decreasing subduction rate. Type 2 experiments take into account a flexural deformation of the plate, and reveal its effect on the flow patterns. The flexural motion induces a flow in the form of spiral pattern at the slab edge. Density-controlled lithospheric flexural motion produces a secondary flow convergence zone beneath the overriding plate. In many convergent zones the subducting lithospheric plate undergoes detachment, and moves down into the mantle freely. Type 3 experiments demonstrate flow perturbations resulting from such slab detachments. Using three-dimensional models we analyze lithospheric stresses in convergent zone, and map the belts of horizontal compression and tension as a function of subduction angle.
机译:本文介绍了从数值模型实验获得的结果,以显示俯冲带岩石圈运动产生的地幔流的不同模式。使用基于麦克斯韦流变学(松弛时间类似于10(11)S)的有限元模型,我们执行了三种类型的实验:类型1,类型2和类型3。在类型1实验中,岩石圈平板俯冲进入地幔平移运动,保持恒定的俯冲角。实验结果表明,与俯冲速率和倾角无关,流扰动以涡旋的形式出现在地幔楔中。地幔楔形涡旋与俯冲板下方的另一个涡旋耦合,随着俯冲速率的降低,涡旋趋于更加明显。 2型实验考虑了板的弯曲变形,并揭示了其对流型的影响。挠曲运动在板边缘处以螺旋形形式引起流动。密度控制的岩石圈挠曲运动在上覆板之下产生次要的流动收敛带。在许多会聚区,俯冲的岩石圈板块发生脱离,并自由地向下移动到地幔中。 3型实验证明了这种平板分离引起的流动扰动。使用三维模型,我们分析了收敛区域的岩石圈应力,并绘制了水平压缩带和张紧带与俯冲角的函数关系图。

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