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Structural evolution of the Rio Grande rift: Synchronous exhumation of rift flanks from 20-10 Ma, embryonic core complexes, and fluid-enhanced Quaternary extension.

机译:里奥格兰德大裂谷的结构演化:20-10 Ma裂谷侧面的同步掘出,胚胎核心复合体和液增强的第四纪伸展。

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摘要

The Rio Grande rift in Colorado and New Mexico is one of the well-exposed and well-studied continental rifts in the world. Interest in the rift is driven not only by pure scientific intrigue, but also by a desire and a necessity to quantify earthquake hazards in New Mexico as well as to assess various water related issues throughout the state. These motivating topics have thus far led to the publication of two Geological Society of America Special Publication volumes in 1994 and 2013. This dissertation aims at building on the wealth of previous knowledge about the rift, and is composed of three separate chapters that focus on the structural evolution of the Rio Grande rift at several different time and spatial scales.;At the largest scale, apatite (U-Th)/He thermochronologic data suggest synchronous extension along the entire length of the Rio Grande rift in Colorado and New Mexico from 20-10 Ma, which is important for understanding and evaluating possible driving mechanisms which are responsible for the rift. Previous tectonic and magmatic events in western North America were highly influential in the formation of the Rio Grande rift, and the new thermochronologic data suggest that its formation may have been closely linked to foundering and removal of the underlying Farallon Plate. A fundamental result of rift development at these scales is a concentration of strain is some regions of the rift. In these regions of maximum extension, fault networks display a geometry involving both high- and low-angle fault networks. These geometries are similar to the early stages in the development of metamorphic core complexes, and thus these regions in the rift link incipient extensional environments to highly extended terranes. At shorter time scales, heterogeneous strain accumulation may be governed in part by fluids in fault zones. As an example, along the western edge of the Albuquerque basin, travertine deposits are cut by extensional veins that record anomalously high strain rates during the Quaternary at this location. The fluids that precipitated the travertine and calcite in veins also contain a small component of deeply-derived fluids such that surface extension in this part of the rift is coupled with processes at deeper levels. Together, these studies suggest that removal of the Farallon slab beneath Colorado and New Mexico may have been a primary mechanism establishing extension in the Rio Grande rift, while continued extension is heterogeneous in time and space and provides an important link between surface processes and processes that operate at mid-crustal levels.
机译:科罗拉多州和新墨西哥州的里奥格兰德裂谷是世界上被暴露的,被充分研究的大陆裂谷之一。人们对裂谷的兴趣不仅受到纯粹的科学阴谋的驱使,还受到对量化新墨西哥州地震灾害以及评估整个州与水有关的各种问题的渴望和必要性。迄今为止,这些激励性的话题导致了1994年和2013年两本美国地质学会的特殊出版物的出版。本论文的目的是基于对裂谷的先前知识的丰富,并由三个独立的章节组成,分别围绕里奥格兰德大裂谷在几个不同的时间和空间尺度上的结构演变;;最大的磷灰石(U-Th)/ He热年代学数据表明,科罗拉多州和新墨西哥州的里奥格兰德大裂谷从20年代开始沿整个长度同步扩展-10 Ma,对于理解和评估可能导致裂谷的驱动机制很重要。北美西部以前的构造和岩浆事件对里奥格兰德裂谷的形成有很大的影响,新的热年代学数据表明,它的形成可能与下伏的法拉隆板块的沉陷和移走密切相关。在这些尺度上裂谷发展的根本结果是在裂谷的某些区域集中了应变。在这些最大扩展区域中,故障网络显示出包含高角度和低角度故障网络的几何形状。这些几何形状与变质岩心复合体发展的早期阶段相似,因此裂谷中的这些区域将初期的伸展环境与高度伸展的地层联系起来。在较短的时间尺度上,非均质应变累积可能部分受断层带中的流体控制。例如,沿着阿尔伯克基盆地的西边缘,石灰岩沉积物被伸展的静脉切开,这些静脉记录了第四纪该位置异常高的应变率。在静脉中沉淀钙华和方解石的流体也包含一小部分深层衍生的流体,因此裂谷这一部分的表面延伸与更深层的过程相关。总之,这些研究表明,拆除科罗拉多州和新墨西哥州以下的法拉隆板可能是在里奥格兰德裂谷建立扩展的主要机制,而持续扩展在时间和空间上是异质的,并提供了表面过程与过程之间的重要联系。在地壳中部运作。

著录项

  • 作者

    Ricketts, Jason William.;

  • 作者单位

    The University of New Mexico.;

  • 授予单位 The University of New Mexico.;
  • 学科 Geology.;Plate Tectonics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 235 p.
  • 总页数 235
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:54:00

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