The Late Triassic Longmenshan lateral foreland thrusting: New insights from geological evidence and 3-D particle discrete-element simulation

GSA Bulletin Pub Date : 2022-12-14 DOI:10.1130/b36501.1
Haonan Zhao, Yuanyuan Zhang, W. Du, Yang Zhang, R. Zhou, Zhaojie Guo
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Abstract

This work proposes a new lateral foreland thrusting model based on geological evidence and 3-D particle discrete-element simulation to explain the Longmenshan southeastward thrusting during the closure of the Songpan-Ganze basin. The Late Triassic NE−SW compression caused by the northward movement of the Qiangtang Block and the resulting differential shortening within the wedge-shaped Songpan-Ganze terrane produced southeastward topographic gradient. The thick sedimentary pile, driven by the horizontal tectonic force and the deviatoric stress generated from gravitational effect, and decoupled from the subducting basement by the low-strength décollement, was laterally extruded and resulted in the southeastward Longmenshan thrusting. Therefore, the Longmenshan thrust belt is a lateral foreland thrust belt of the Songpan-Ganze terrane. For the first time, 3-D particle discrete-element simulation was used for the geological study of the Longmenshan area, and it clearly reproduces the dynamical process of the Longmenshan southeastward thrusting and well predicts the Xiaojin Arcuate Zone. The particle discrete-element simulation results verify the new model and reveal that two key factors facilitate the lateral foreland thrusting: the wedge-shaped geometry that produces differential shortening and lateral topographic gradient, and the low-strength décollement that decouples the extruded sedimentary pile from the basement. The lateral foreland thrust belt, which is unique in its tectonic location and dynamic behavior, is a new kind of foreland thrust belt that is different from the pro-foreland and retro-foreland thrust belts, and it provides new insight into the tectonic evolution of collisional orogens.
晚三叠世龙门山侧向前陆逆冲:来自地质证据和三维颗粒离散元模拟的新认识
本文基于地质证据和三维颗粒离散元模拟,提出了一种新的横向前陆逆冲模型,以解释松潘-甘孜盆地合拢期龙门山的东南逆冲运动。晚三叠世羌塘地块北移引起的NE - SW挤压及其在松潘-甘孜楔形地体内的差异缩短形成了东南方向的地形梯度。厚沉积桩在水平构造力和重力作用产生的偏应力的作用下,受低强度地层的影响与俯冲基底分离,侧向挤压形成龙门山东南逆冲。因此,龙门山冲断带是松潘-甘泽地体的横向前陆冲断带。首次将三维粒子离散元模拟应用于龙门山地区的地质研究,清晰再现了龙门山东南逆冲的动力学过程,对小金弧形带进行了较好的预测。颗粒离散元模拟结果验证了新模型的有效性,并揭示了促进侧向前陆逆冲的两个关键因素:楔形几何形状产生的差异缩短和侧向地形梯度,以及低强度的沉积物沉积物将挤压沉积桩与基底分离。横向前陆冲断带是一种不同于前陆冲断带和后陆冲断带的新型前陆冲断带,具有独特的构造位置和动力学行为,为碰撞造山带的构造演化提供了新的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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