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The Role of Surface Processes in Partitioning of Strain and Uplift, St. Elias Orogen, Southern Alaska

机译:表面过程在应变和隆升划分中的作用,阿拉斯加南部圣埃利亚斯造山带

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Three-dimensional thermo-mechanical numerical simulations of the ongoing Yakutat–North America collision are used to identify the role of surface processes in triggering localized rapid uplift, exhumation, and strain observed within the St. Elias orogen of southern Alaska. Thermochronological data reveal localized rapid exhumation associated with the Seward-Malaspina and Hubbard Glaciers within a tectonic corner structure where transpressional motion to the south along the Fairweather Fault system transitions to shortening to the north and west within the active fold-and-thrust belt of the St. Elias orogen. The modeled deformation patterns are characteristic of oblique convergence within a tectonic corner, recording the transition from simple shear to contractional strain within a zone spatially consistent with the highest exhumation rates suggesting the corner geometry is the primary control of strain partitioning.The relative roles of surface-related processes versus tectonics-related processes in the development of this pattern of deformation were tested with the inclusion of an erosional surface model. The presence of surface processes enhanced the uplift and development of a localized rapid exhumation. When spatially and temporally erosion models are employed, the location of maxima is shifted in response. This indicates that efficient erosion, and resultant deposition and material advection can influence the localization of strain and uplift.
机译:正在进行的雅库塔特-北美碰撞的三维热力学数值模拟被用于确定表面过程在触发阿拉斯加南部圣埃利亚斯造山带中观测到的局部快速隆升,发掘和应变中的作用。热年代学数据揭示了与构造角结构内的苏厄德-马拉皮纳和哈伯德冰川相关的局部快速发掘,沿费尔威瑟断裂系统向南的压移运动过渡到该带活动褶皱-冲断带内向北和向西的缩短。圣伊莱亚斯造山带。建模的变形模式是构造角内倾斜会聚的特征,记录了在空间上与最高挖掘速率一致的区域内从简单剪切到收缩应变的转变,表明角几何是应变分配的主要控制因素。包括侵蚀表面模型,测试了这种变形模式发展过程中的与构造相关的过程。表面过程的存在增强了局部快速发掘尸体的隆起和发展。当采用时空侵蚀模型时,最大值的位置会相应地移动。这表明有效的侵蚀以及由此产生的沉积和物质对流会影响应变和隆起的局部化。

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