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Moletrack scarps to mountains: Quaternary tectonics of the central Alaska Range.

机译:山脉上的痣轨道陡峭:阿拉斯加山脉中部的第四纪构造。

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摘要

Deformation across plate boundaries often occurs over broad zones with relative motions between plates typically accommodated by faults of different styles acting together in a complex system. Collision of the Yakutat microplate within the Alaskan portion of the Pacific--North America plate boundary drives deformation over 600 km away where the Denali fault divides predominantly rigid crustal block motions of southern Alaska from distributed deformation in central Alaska. Quaternary geologic mapping along the Nenana River valley and the Japan Hills of the northern foothills of the Alaska Range defines zones of Quaternary thrust faulting recorded in the progressive deformation of Pleistocene fluvial terraces. I use topographic profiles of these terraces and paleoseismic trenching of fault scarps to characterize the Quaternary activity and constrain the subsurface geometry of these faults. Radiocarbon and cosmogenic exposure dating methods provide age control on the stratigraphy in the trenches and landforms offset by these faults. These observations define a 1--1.5 mm/yr slip rate for the Gold King fault which changes laterally from a north-vergent thrust into a north and south vergent thrust wedge that uplifts the Japan Hills. Along the Nenana River valley, the progressive deformation of Pleistocene surfaces defines a north-vergent critically-tapered thrust wedge. The geometry of progressive uplift and folding requires a near planar, south-dipping basal thrust fault with two major north-dipping backthrusts. All three faults were active simultaneously on a scale of 10 4 yrs with slip rates of 0.25--1 mm/yr, until the late Pleistocene when we infer the retreat of glacial ice from the main axis of the Alaska Range caused a change in thrust wedge dynamics. I use the orientation of Quaternary deformation north of the Denali fault to show that strain is highly partitioned and establish geologic constraints on the regional horizontal stress orientation. North of the Denali fault, fault-normal principal shortening accommodates 3--5 mm/yr of strain transfer across the Denali fault system. Two appendices contain additional results of paleoseismic trenching and neotectonic investigations across 4 active faults near the Nenana River.;This dissertation includes previously unpublished co-authored material.
机译:跨越板块边界的变形通常发生在宽阔的区域上,板块之间的相对运动通常由在复杂系统中共同作用的不同类型的断层所适应。太平洋-北美板块边界的阿拉斯加部分内的雅库塔特微板块碰撞驱动了600多公里外的变形,那里的Denali断层将阿拉斯加南部的刚性地壳块运动与阿拉斯加中部的分布形变分开了。沿Nenana河谷和阿拉斯加山脉北麓的Japan Hills的第四纪地质图定义了在更新世河流阶地逐渐变形中记录的第四纪逆冲断层带。我使用这些阶地的地形图和断层陡坡的古地震开槽来表征第四纪活动并限制这些断层的地下几何形状。放射性碳和宇宙成因测年法可以控制这些断层所抵消的地沟和地貌中的地层年龄。这些观测结果为金王断层定义了1--1.5毫米/年的滑移速率,该滑移速率从北向的逆冲推力向北和南向的逆冲推力楔变,使日本山隆起。沿着Nenana河谷,更新世表面的逐渐变形定义了北向临界锥度的逆冲楔块。渐进隆升和褶皱的几何形状需要一个接近平面的,南倾的基底逆冲断层和两个北倾的大反冲。所有这三个断层都在10 4年的范围内同时活动,滑移速率为0.25--1 mm / yr,直到晚更新世时我们推断出阿拉斯加山脉的主轴线退回了冰川冰造成了推力变化。楔形动力学。我使用了Denali断层以北的第四纪变形的方向来显示应变是高度分区的,并在区域水平应力方向上建立了地质约束。在Denali断层以北,断层正常主缩短缩短了整个Denali断层系统的3--5 mm / yr的应变传递。两个附录包含对Nenana河附近4个活动断层的古地震ose沟和新构造调查的其他结果。本论文包括以前未发表的合著材料。

著录项

  • 作者

    Bemis, Sean Patrick.;

  • 作者单位

    University of Oregon.;

  • 授予单位 University of Oregon.;
  • 学科 Geology.;Plate Tectonics.;Geomorphology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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