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首页> 外文期刊>GSA Bulletin >Orthogonal jointing during coeval igneous degassing and normal faulting, Yucca Mountain, Nevada
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Orthogonal jointing during coeval igneous degassing and normal faulting, Yucca Mountain, Nevada

机译:内华达州尤卡山,近代火成岩脱气和正断层的正交节理

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摘要

An orthogonal system of tube-bearing joints constitutes the oldest fractures in the Tiva Canyon Tuff at Yucca Mountain, Nevada. The joints formed within a month of ignimbrite deposition, prior to major degassing. The system consists of (1) narrow, persistent, northeast-striking joint swarms with trace lengths typically greater than 5 m and between-joint spacings of less than 20 cm and (2) northwest-striking swarms that have a more en echelon geometry and greater between-joint spacings compared to the northeast-striking swarms. Between-swarm spacing for both trends is 50 m. Questions concerning the joints include the following: (1) What was the origin of driving stress(es) for formation of the joints, particularly as their orientations were not consistent with the regional stress geometry at the time of their formation? (2) What mechanism caused the horizontal principal stresses to be reoriented so as to yield an orthogonal geometry? (3) What insights can be developed for predicting joint geometry in unexposed rock volumes by understanding joint origin? These questions are important because the joints and other fractures may affect the performance of a proposed high-level nuclear waste repository within Yucca Mountain.
机译:管状关节的正交系统构成了内华达州尤卡山蒂瓦峡谷凝灰岩中最古老的裂缝。 在主要脱气之前的 内,在火成岩沉积一个月内形成了接头。该系统包括(1)痕迹长度 通常大于5 m且节间间距小于 超过20厘米和(2)西北冲群的梯形几何形状更大,并且节间间距比与东北冲群的 大。两种趋势的 的群体间间距为50 m。有关关节的问题包括以下内容:(1)形成关节的驱动应力 的起源是什么,尤其是它们的方向 在形成时的 与区域应力几何形状不一致吗? (2)哪种机制导致水平 主应力被重新定向从而产生正交的 几何? (3)通过了解节理 的起源,可以为预测未暴露岩石体积中的节理几何学发展出哪些见解?这些问题很重要,因为关节和 骨折可能会影响拟在丝兰山中建立的高级别 核废料仓库的性能。

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  • 来源
    《GSA Bulletin》 |2003年第12期|1492-1509|共18页
  • 作者单位

    Department of Geological Sciences, University of Tennessee, Knoxville, Tennessee 37996, USA;

    Center for Nuclear Waste Regulatory Analyses, Southwest Research Institute, San Antonio, Texas 78238, USA;

    Department of Geology, Western Washington University, Bellingham, Washington 98225, USA;

    Center for Nuclear Waste Regulatory Analyses, Southwest Research Institute, San Antonio, Texas 78238, USA;

    Center for Nuclear Waste Regulatory Analyses, Southwest Research Institute, San Antonio, Texas 78238, USA;

    Center for Nuclear Waste Regulatory Analyses, Southwest Research Institute, San Antonio, Texas 78238, USA;

    Department of Earth and Environmental Sciences, University of Texas, San Antonio, Texas 78249, USA;

    Center for Nuclear Waste Regulatory Analyses, Southwest Research Institute, San Antonio, Texas 78238, USA;

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