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The making of a high elevation plateau: Insights from the central Andean Plateau, Bolivia.

机译:高海拔高原的形成:玻利维亚中部安第斯高原的见解。

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摘要

The structural link that ties the formation of the central Andean plateau to the evolution of the Andean fold-thrust belt is formation and propagation of basement megathrusts. Balanced cross-sections through a regional west-vergent thrust system in the hinterland of the eastward-verging Andean fold-thrust belt suggest that the Altiplano basin is a crustal-scale, piggy-back basin created as a basement megathrust propagated up and over a half-crustal scale ramp located on the eastern edge of the Altiplano. The backthrust belt, detached above the basement thrust sheet, acted as a crustal-scale, passive-roof duplex building taper after the megathrust overextended the system eastward. Pervasive shortening and vertical elongation seen at the outcrop and regional scales supports the development of the backthrust belt as a taper-building mechanism.; The interrelationship of the backthrust belt, basement megathrust, and Andean plateau is shown in a sequential, kinematic model based on balanced cross sections from the volcanic arc to the foreland. The model links the formation of the plateau to east- and west-verging portions of the Andean fold-thrust belt through the eastward propagation of two large basement megathrusts. The megathrusts can explain topographic and structural steps in the Andean fold-thrust belt and accommodate a minimum of 300–330 km of shortening which matches shortening estimates in the tightly folded and faulted cover rocks. To a first approximation, the eastern margin of the central Andean plateau (defined by the 3 km topographic contour) is contiguous with the leading edge of the upper basement megathrust. The relationship between the basement highs and the physiographic boundaries of the Andean plateau suggests that extensive megathrust sheets (involving strong rocks such as crystalline basement or quartzite) play an important role in the formation of the central Andean plateau.; Combining the history of foreland basin migration with palinspastically restored regional cross sections across the Bolivian Andes between 18°–20°S argues for an eastward migrating fold-thrust belt/foreland basin system since the late Cretaceous. The longer time span for the Andean orogeny implies greater shortening amounts, a decrease in shortening rates with time and a high (3–4 km) Andean plateau by 20 Ma.
机译:将安第斯高原中部高原的形成与安第斯褶皱冲断带的演化联系起来的结构性联系是地下巨型冲断的形成和传播。在向东延伸的安第斯褶皱冲断带腹地,通过区域西部折断冲断系统的平衡剖面表明,Altiplano盆地是一个地壳规模的背basin盆地,其形成是由于基底超大冲断作用向上和向上传播。位于地高原东部边缘的半壳尺度斜坡。在超大推力使系统向东延伸之后,背推带脱离了地下室推力板的上方,成为地壳尺度的被动屋顶双层建筑锥度。在露头和区域尺度普遍见到的缩短和垂直伸长,支持了反冲带的发展,成为一种锥度建立机制。在基于从火山弧到前陆的平衡截面的连续运动学模型中,显示了逆冲带,基底超大推力和安第斯高原的相互关系。该模型通过两个大型地下超大推力的东向传播,将高原的形成与安第斯褶皱冲断带的东西向过渡部分联系起来。巨推力可以解释安第斯褶皱冲断带中的地形和结构步骤,并能容纳至少300-330 km的缩短,这与紧紧折叠和断层的盖层岩石中的缩短估计相符。初步估算,中部安第斯高原的东​​缘(由3 km的地形轮廓定义)与上层地下巨推力的前缘相邻。基底高度与安第斯高原高原的地貌边界之间的关系表明,广泛的巨型冲断层(涉及坚硬的岩石,例如晶体基底或石英岩)在安第斯高原中部的形成中起着重要作用。将前陆盆地的迁徙历史与南半球在18°–20°S期间在玻利维亚安第斯山脉上恢复的区域横截面相结合,认为自白垩纪晚期以来向东移动的褶皱冲断带/陆前盆地系统。安第斯造山带的时间跨度越长,意味着缩短的时间越长,缩短的速度会随着时间的推移而降低,并且安第斯高原的高度(3-4 km)要高20 Ma。

著录项

  • 作者

    McQuarrie, Nadine.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

  • 入库时间 2022-08-17 11:47:13

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