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Crustal and Uppermost Mantle Structure beneath the Western United States from USArray Regional Phase Analysis.

机译:从USArray区域相位分析得出美国西部的地壳和最高地幔结构。

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摘要

The aim of this dissertation is to improve our understanding of the crust and uppermost mantle structure in the western United States, profiting from the wealth of regional phase data recorded at USArray stations. USArray, a transportable seismic array of ∼400 seismometers, has greatly increased seismic data coverage across the United States in the past few years, and allows imaging of the lithosphere of the North American continent with better resolution and new methods. The regional phases are often challenging to analyze, especially in a tectonically-active region like the western United States, because of their sensitivities to the heterogeneities of the crust and uppermost mantle. However, knowledge of the seismic structure of the lithosphere is not only essential in order to accurately image the velocity structure at greater depths, but also for constraining geodynamic models that reconstruct the tectonic evolution of the continent, and hence the information that is carried by the regional phases is very valuable. The data set used in this study consists mostly of the regional seismic phases Pn and Sn, which propagate horizontally along the Moho in the mantle lid and constrain the seismic velocity structure at a confined depth. We applied traditional tomographic methods that profit from the improved ray coverage through USArray, but also employed array-based techniques that take advantage of the regular station spacing of the transportable array and don't depend on regularization. In addition, we used stacking methods to image the propagation efficiency of the Sn phase, which is often highly attenuated in tectonically active regions, on a regional scale. The results complement other seismic studies that average over greater depth intervals, such as surface- and body-wave tomographies and anisotropy analysis from shear-wave splitting, to provide information on temperature, composition, and tectonic processes at depth. Comparisons between Pn azimuthal anisotropy and fast polarization direction from shear wave splitting suggest significant vertical changes in anisotropy in several regions of the upper mantle beneath the western United States. Sn can in theory further constrain the nature of anisotropy in the mantle lid. However, we have so far been unable to resolve shear-wave splitting directly in the Sn waveforms as the phase is often attenuated and difficult to detect. Still, we obtained evidence for Sn propagation in several regions of the western United States such as the central Great Basin and the northeastern part of the Colorado Plateau. We found that there are enough quality Sn picks for joint Pn-Sn tomography and identified prominent Vp/Vs anomalies, such as large high Vp/Vs regions --- typically associated with partial melt --- below the Snake River Plain and the Colorado Plateau.
机译:这篇论文的目的是通过从USArray台站记录的大量区域相数据中获益,提高我们对美国西部地壳和最上层地幔结构的了解。 USArray是一种可移动的约400地震仪的地震阵列,在过去几年中极大地增加了整个美国的地震数据覆盖范围,并允许以更好的分辨率和新方法对北美大陆的岩石圈进行成像。区域阶段通常难以分析,特别是在像美国西部这样的构造活跃地区,因为它们对地壳和最上层地幔的非均质性敏感。但是,对岩石圈地震结构的了解不仅对于准确成像更大深度处的速度结构至关重要,而且对于限制重建该大陆构造演化的地球动力学模型以及由此获得的信息也至关重要。区域阶段非常有价值。本研究中使用的数据集主要由区域地震相Pn和Sn组成,它们在地幔盖中沿莫霍面水平传播,并将地震速度结构限制在一定的深度。我们应用了传统的层析成像方法,这些方法得益于通过USArray改善的射线覆盖范围,但是还采用了基于阵列的技术,该技术利用了可移动阵列的规则站点间距,并且不依赖于正则化。此外,我们使用堆叠方法对锡相的传播效率进行成像,在区域规模上,锡相的传播效率通常在构造活跃区域被大大衰减。该结果补充了在更大深度间隔内平均的其他地震研究,例如表面波和体波层析成像以及剪切波分裂的各向异性分析,以提供有关深度的温度,组成和构造过程的信息。 Pn方位各向异性和剪切波分裂引起的快速极化方向之间的比较表明,在美国西部下地幔的几个区域中,各向异性存在着明显的垂直变化。理论上,锡可以进一步限制地幔盖中各向异性的性质。但是,由于相位经常被衰减并且难以检测,因此到目前为止,我们还无法直接在Sn波形中解决剪切波分裂问题。尽管如此,我们仍获得了锡在美国西部几个地区(例如大盆地中部和科罗拉多高原东北部)传播的证据。我们发现有足够的高质量Sn拾取器用于联合Pn-Sn层析成像,并发现了明显的Vp / Vs异常,例如在Snake River Plain和Colorado下的大型高Vp / Vs区域(通常与部分融化有关)高原。

著录项

  • 作者

    Buehler, Janine Sylvia.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:43

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