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A new tectonic model for the Appalachian Plateau detachment sheet of southwestern Pennsylvania.

机译:宾夕法尼亚西南部阿巴拉契亚高原脱离片的新构造模型。

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摘要

Chestnut Ridge, Laurel Hill, and Negro Mountain are structures in the north central Appalachian plateau detachment sheet called the high-fold anticlines. An understanding of the structural development of these anticlines is inferred from a network of seismic profiles that reveal a pervasively fractured and tectonically thickened Upper Devonian section, called a wedge zone. Both the thrust wedges of the Upper Devonian and the imbrication of the more competent mechanical layering of the Lower Devonian interval manifest a similar structural style consisting of doubly verging fault-related folds that merge along anticlinal axes above the salt-thickened Silurian Salina Group. From the Allegheny structural front to the western terminus of the detachment sheet, each detachment sheet anticline is always situated immediately to the foreland side of structures in the Lower Paleozoic and the basement faults that they imply. The intervening synclines are characterized by an absence of deformation in the Devonian section. From southeast to northwest in the direction of tectonic transport, there is a systematic decrease in the cross-sectional width and area of the anticlines. The position of the anticlines relative to the basement faults strongly suggests that the Devonian section was transported westward along a Salina detachment surface disrupted by salt-thickened basement growth faults. Vertically propagated basement faults provide discontinuities or stress risers that disrupt the detachment sheet such that local bends in the sheet produce fracturing or wedging in the over-riding Devonian section as it is transported laterally to the northwest. Vertical propagation of basement faults was a consequence of tectonic inversion and the development of buttress anticlines in the footwall of the Appalachian plateau detachment sheet. A portion of the total horizontal displacement of the detachment sheet (7.2 km) is allocated to the vertical growth of the anticlines. In the detachment sheet, which acts as a stress guide, anticlinal growth is a mechanism to balance forces and strengthen a section that has been weakened by pervasive fracture when passing over long-lived basement growth faults.
机译:栗树岭,月桂树山和黑人山是阿巴拉契亚高原中部北部分离带的结构,称为高褶背斜线。对这些背斜构造发展的理解是从地震剖面网络推论出来的,该网络揭示了一个普遍裂缝和构造增厚的上泥盆统剖面,称为楔形带。上泥盆纪的逆冲楔块和下泥盆纪区间的更有效的机械层的褶皱都表现出相似的结构样式,该构造样式由与断层相关的双倍褶皱组成,这些褶皱沿增盐的志留纪盐沼群上方的背斜轴合并。从Allegheny结构前缘到分离片的西端,每个分离片的背斜始终位于下古生界构造的前陆侧,并暗示它们所隐含的基底断层。中间的向斜线的特征是泥盆纪断面不变形。从东南向西北沿构造运动的方向,背斜的横截面宽度和面积都有系统的减小。背斜相对于基底断层的位置有力地表明泥盆纪剖面是沿着盐增厚的基底生长断层破坏的盐沼分离面向西输送的。垂直传播的基底断层会提供不连续性或应力上升,从而破坏分离片,从而在片上的局部弯曲在上覆泥盆纪剖面中向侧向西北输送时产生破裂或楔入。基底断层的垂直传播是构造反转和阿巴拉契亚高原脱离板下盘的支撑背斜发育的结果。剥离片的总水平位移(7.2 km)的一部分分配给背斜线的垂直方向。在作为应力导向的剥离片中,背斜生长是一种平衡力并增强经过长寿命地下室生长断层而被普遍性裂缝所削弱的断面的机制。

著录项

  • 作者

    Scanlin, Michael A.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Geology.; Geophysics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地球物理学;
  • 关键词

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