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Studies of the mechanics and structure of shallow magmatic plumbing systems.

机译:浅岩浆管道系统的力学和结构研究。

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摘要

Volcanic activity, and the resultant deposits and structures at the Earth's surface, are the outcome of the inner workings of underground magmatic plumbing systems. These systems, essentially, consist of magma reservoirs which supply magma to the surface through volcanic conduits feeding volcanic eruptions. The mechanics and structure of plumbing systems remain largely unknown due to the obvious challenges involved in inferring volcanic processes occurring underground from observations at the surface. Nevertheless, volcanologists are beginning to gain a deeper understanding of the workings and architecture of magmatic plumbing systems from geophysical observations on active volcanoes, as well as from geological studies of the erosional remnants of ancient volcanic systems.;In this work, I explore the relationship between the structure and mechanics of shallow plumbing systems and the volcanic eruptions these systems produce. I attempt to contribute to the understanding of this complex relationship by linking geological and geophysical observations of an eroded basaltic subvolcanic system, and the eruptive and tectonic activity of an active volcano, with mathematical models of magma ascent and stress transfer.;The remarkable exposures of the Carmel outcrop intrusions, near the San Rafael swell, southeast Utah, U.S.A., allow detailed geological and geophysical observations of the roots of volcanic conduits that emerge from a subhorizontal magma feeder reservoir. These observations reveal a new mechanism for magma ascent and eruption triggering through gravitational instabilities created from an underlying feeding sill, and shed light on the mechanics of sill emplacement. Geophysical and geological observations of the 1999 and 1992 eruptions of the Cerro Negro volcano, Nicaragua, are used to explore the coupling between changes in the stress field and the triggering of volcanic eruptions, and magma ascent through the shallow crust. Modeling results of stress transfer and conduit flow highlight the importance of the surrounding stress field and geometry of the volcanic conduits that comprise shallow plumbing systems.
机译:火山活动以及在地球表面形成的沉积物和结构是地下岩浆管道系统内部工作的结果。这些系统基本上由岩浆储层组成,这些储层通过供给火山爆发的火山管道将岩浆供应到地表。由于从地表观测推断地下发生的火山过程涉及明显的挑战,因此管道系统的力学和结构仍然未知。尽管如此,火山学家开始从对活火山的地球物理观测,以及对古代火山系统侵蚀残余物的地质研究中,对岩浆管道系统的工作原理和体系结构有了更深入的了解。在浅水暖系统的结构和力学以及这些系统产生的火山喷发之间。我试图通过将侵蚀的玄武岩次火山系统的地质和地球物理观测结果,以及活火山的喷发和构造活动与岩浆上升和应力转移的数学模型联系起来,为这种复杂关系的理解做出贡献;美国犹他州东南部San Rafael隆​​起附近的Carmel露头侵入带,可以对水平岩浆下属储层中火山管道的根部进行详细的地质和地球物理观测。这些观察结果揭示了岩浆上升和喷发的新机制,该机制是由下伏的基岩坎created引起的重力不稳定性触发的,并阐明了基石安置的机理。尼加拉瓜的塞罗内格罗火山1999年和1992年喷发的地球物理和地质观测资料被用于探索应力场变化与火山喷发触发以及岩浆通过浅地壳上升之间的耦合。应力传递和导管流动的建模结果突显了周围应力场和构成浅管道系统的火山导管几何形状的重要性。

著录项

  • 作者

    Diez, Mikel.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Geology.;Geophysics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 228 p.
  • 总页数 228
  • 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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