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The application of seismic techniques to hydrogeological investigations.

机译:地震技术在水文地质调查中的应用。

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摘要

The objective of this thesis is to demonstrate some new applications of seismic techniques for hydrogeological applications. A compressional-wave, surface-based, reflection seismic technique is used to map aquifer boundaries within a series of Pleistocene near-surface sediments. The interpretation uses both water wells and sequence stratigraphic concepts to identify the boundaries of new and existing aquifers. The use of the cone penetrometer is an integral part of this thesis. The seismic cone is demonstrated to be both cost-effective and reliable for the acquisition of high-quality vertical seismic profile (VSP) data. Other data from the cone, in particular the tip resistance data, are shown to be an integral link for the conversion of shear-wave velocities to values of hydraulic conductivity. Surface-based, shear-wave reflection seismic data are used to image an aquifer contained within Holocene deltaic sediments. A Bayesian inversion of the shear-wave seismic amplitudes (using cone-derived velocities) results in the generation of a two-dimensional profile of shear-wave velocity that is a direct indication of aquifer heterogeneity. Conversion of the velocity to hydraulic conductivity (using a cone-derived relationship) results in the distribution of a key hydrogeologic property within the aquifer. The results from the thesis show significant promise for improving groundwater flow models and providing new techniques for the management and protection of our groundwater resources.
机译:本文的目的是证明地震技术在水文地质应用中的一些新应用。使用基于表面的压缩波反射地震技术来绘制一系列更新世近地表沉积物中的含水层边界。该解释使用水井和层序地层学概念来确定新的和现有的含水层的边界。锥形渗透仪的使用是本论文不可或缺的一部分。为了获得高质量的垂直地震剖面(VSP)数据,证明了该地震锥既具有成本效益又可靠。来自锥体的其他数据,特别是尖端阻力数据,显示为将剪切波速度转换为水力传导率值的必不可少的环节。基于表面的剪切波反射地震数据用于对全新世三角洲沉积物中的含水层进行成像。剪切波地震振幅的贝叶斯反演(使用圆锥推导的速度)导致生成剪切波速度的二维剖面,这是含水层非均质性的直接指示。速度到水力传导率的转换(使用锥关系)导致含水层内关键的水文地质特性的分布。论文的结果显示出改善地下水流模型和为管理和保护我们的地下水资源提供新技术的巨大希望。

著录项

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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