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Structural framework of the Edwards Aquifer recharge zone in south-central Texas

机译:德州中南部爱德华兹含水层补给区的结构框架

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摘要

The Edwards Aquifer, the major source of water for many communities in central Texas, is threatened by population growth and development over its recharge zone. The location of the recharge and confined zones and the flow paths of the aquifer are controlled by the structure of and deformation processes within the Balcones fault system, a major system of predominantly down-to-the-southeast normal faults. We investigate the geologic structure of the Edwards Aquifer to assess the large-scale aquifer architecture, analyze fault offset and stratigraphic juxtaposition relationships, evaluate fault-zone deformation and dissolution and fault-system architecture, and investigate fault-block deformation and scaling of small-scale (intrablock) normal faults. Characterization of fault displacement shows a pattern of aquifer thinning that is likely to influence fault-block communication and flow paths. Flow-path constriction may be exacerbated by increased fault-segment connectivity associated with large fault displacements. Also, increased fault-zone deformation associated with larger-displacement faults is likely to further influence hydrologic properties. Overall, faulting is expected to produce strong permeability anisotropy such that maximum permeability is subhorizontal and parallel to fault-bedding intersections. At all scales, aquifer permeability is either unchanged or enhanced parallel to faults and in many cases decreased perpendicular to faults.
机译:爱德华兹含水层是得克萨斯州中部许多社区的主要水源,其补给区的人口增长与发展受到威胁。补给区和受约束区的位置以及含水层的流动路径由Balcones断层sup系统中的构造和变形过程控制,这是一个主要由南至南的正常断层组成的主要系统。我们研究了 Edwards含水层的地质结构,以评估大型含水层的结构, 分析断层偏移和地层并置关系, 评估断层-区域变形和溶解以及断层系统 的体系结构,并研究小规模(块内)正常断层的断块变形和比例缩放 。断层位移的特征 显示了一种含水层变薄的模式,它 可能会影响断块连通和流动路径。 流径收缩可能是与大断层位移相关的断层段 连通性的增加加剧了这种情况。同样,与大位移 断层相关的 断层带变形可能会进一步影响水文特性。 总体而言,断层会产生强烈的断层。渗透率 各向异性,使得最大渗透率在水平以下,并且 平行于断层-地层相交。在所有尺度上,含水层 的渗透率不变或平行于断层 增强,并且在许多情况下垂直于断层而降低。

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  • 来源
    《GSA Bulletin》 |2004年第4期|407-418|共12页
  • 作者单位

    CNWRA, Southwest Research Institute?, San Antonio, Texas, 78238-5166, USA;

    CNWRA, Southwest Research Institute?, San Antonio, Texas, 78238-5166, USA;

    CNWRA, Southwest Research Institute?, San Antonio, Texas, 78238-5166, USA;

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

    CNWRA, Southwest Research Institute?, San Antonio, Texas, 78238-5166, USA;

    1241 Milam Building, 115 East Travis Street, San Antonio, Texas 78205, USA;

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