首页> 外文学位 >Paleomagnetic, structural, and seismological evidence for oblique-slip deformation in fault-related folds in the Rocky Mountain Foreland, Colorado Plateau, and central Coast Ranges.
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Paleomagnetic, structural, and seismological evidence for oblique-slip deformation in fault-related folds in the Rocky Mountain Foreland, Colorado Plateau, and central Coast Ranges.

机译:落基山前陆,科罗拉多高原和中部海岸山脉断层相关褶皱中的斜滑变形的古磁,结构和地震学证据。

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摘要

The two geologic questions I address in this research are: do fault-related folds accommodate oblique-slip shortening, and how is oblique-slip deformation absorbed within the folded strata? If the strata is deforming as a strike-slip shear zone, then we should be able to observe material rotations produced by strike-slip shear by measuring paleomagnetic vertical-axis rotations. I have approached these problems by applying paleomagnetic vertical-axis rotations, minor fault analyses, and focal mechanism strain inversions to identify evidence of strike-slip shear and to quantify oblique-slip deformation within fault-related folds in the Rocky Mountain Foreland, Colorado Plateau, and the central Coast Ranges.; Clockwise paleomagnetic vertical-axis rotations and compressive paleostress rotations of 15-40º in the forelimb of the Grayback Monocline, northeastern Front Range Colorado, indicate that this Laramide fold is absorbing right-lateral shear from a N90E regional shortening direction. This work shows that paleomagnetic vertical-axis rotations in folded strata can be used to identify strike-slip motion on an underlying fault, and that oblique-slip deformation is localized in the forelimb of the fold.; I applied the same paleomagnetic methods to identify oblique-slip on the underlying faults of the Nacimiento, East Kaibab, San Rafael, and Grand Hogback monoclines of the Colorado Plateau. The absence of paleomagnetic rotations and structural evidence for small displacements at the Nacimiento and East Kaibab monoclines indicate minor (1km) right-lateral slip is being accommodated in these folds. Paleomagnetic vertical-axis rotations are found in the forelimbs of the San Rafael and Grand Hogback monoclines, yielding strike-slip displacements of ∼5km within these two folds. These results are consistent with a northeast Laramide compressive stress direction.; In the Coalinga anticline, central Coast Ranges, California, clockwise paleomagnetic rotations and an 8º counterclockwise deflection of the maximum shortening direction (derived from focal mechanisms strain inversions of the upper 7km) are compatible with right-lateral shear. The maximum shortening direction in the area of the mainshock rupture is fold-normal, indicating that strike-slip displacement is confined to the main fault plane and not distributed to the hanging wall. The San Andreas Fault is therefore partitioning a small amount of strike-slip to the Coalinga anticline.
机译:我在这项研究中要解决的两个地质问题是:与断层有关的褶皱是否能适应斜滑缩短,以及斜滑变形如何在褶皱地层中吸收?如果地层作为走滑剪切带变形,那么我们应该能够通过测量古磁垂直轴旋转来观察走滑剪切产生的材料旋转。我已经通过应用古磁垂直轴旋转,轻微断层分析和震源机制应变反演来解决这些问题,以识别走滑剪切的证据,并量化科罗拉多高原洛矶山前陆断层相关褶皱内的斜滑变形。以及中央海岸山脉。科罗拉多州东北山脉东北部的Grayback Monocline的前肢中的顺时针古磁性垂直轴旋转和压缩古应力旋转为15-40º,表明该Laramide褶皱吸收了N90E区域缩短方向的右向剪切力。这项工作表明,褶皱地层中的古磁垂直轴旋转可以用来识别下伏断层上的走滑运动,并且倾斜滑移变形位于褶皱的前肢中。我采用了相同的古磁方法来识别科罗拉多高原的纳西门托,东凯巴布,圣拉斐尔和大霍格巴克单断层潜在断层的斜滑。纳西门托和东凯巴布单线古迹没有古磁旋转和小位移的结构证据,表明这些褶皱中有较小的(<1km)右旋滑移。在圣拉斐尔和大霍格贝克单斜线的前肢中发现了古磁垂直轴旋转,在这两个褶皱中产生了约5km的走滑位移。这些结果与东北拉拉蒙压应力方向一致。在加利福尼亚州中部海岸山脉的Coalinga背斜中,顺时针古磁场旋转和最大缩短方向的8º逆时针偏转(源自震源机制,上部7 km的应变反演)与右向剪切力兼容。主冲击破裂区域的最大缩短方向是折法线,表明走滑位移局限于主断层平面,而没有分布在悬挂壁上。因此,圣安德烈亚斯断层将少量走滑带分隔到科林加背斜。

著录项

  • 作者

    Tetreault, Joya Liana.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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