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The site investigation and engineering characterization of glacial and glacilacustrine materials.

机译:冰川和glacuacustrine材料的现场调查和工程表征。

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摘要

A generalized engineering classification method for characterizing Pleistocene glacial materials on the basis of their glaciological mode of origin is presented in this thesis. In formulating the classification an interdisciplinary approach has been adopted. The geotechnical aspects have been based largely on data from extensive site investigations undertaken at the Brenig dam site in North Wales, supplemented where necessary by data obtained from the glaciological and geotechnical literature. Particular attention has been paid to the macrofabric of the deposits in view of the controlling influence that discontinuities exert on engineering behaviour. The glaciological appraisal of the materials has also relied heavily on detailed evaluation of the engineering behaviour and textural properties of the Brenig deposits. However, in order to extend the applicability of the proposed classification to other locations, the site-specific data has been correlated with results from current glaciological research on modern arctic and temperate glaciers. As a prerequisite for such an assessment, a reconstruction of the glacial history of the Brenig site has been attempted. The similar mineralogy of the various glacial deposits and the availability of extensive geotechnical data on the complete suite of materials has made the, site ideal for this purpose. In presenting the results of the studies, the thesis has been divided into four sections. By way of background, in Part I the methodology and scope of the investigations conducted at Brenig are presented. In Part II a comparison is made between the characteristics of Recent glacial deposits and the Pleistocene materials at Brenig. The stratigraphy and glacial chronology of the site are developed in Part III, while in Part IV the geotechnical evaluation of the site is presented and set within the glaciological framework as a basis for the proposed classification.
机译:本文提出了一种基于更新世冰川材料起源的广义工程分类方法。在制定分类时,采用了跨学科方法。岩土方面主要是基于在北威尔士的Brenig大坝现场进行的广泛现场调查得到的数据,必要时还可以从冰川和岩土文献中获得数据进行补充。考虑到不连续性对工程性能的控制影响,特别关注了沉积物的宏观结构。材料的冰川学评估也严重依赖于对布伦尼格矿床的工程行为和结构特性的详细评估。但是,为了将拟议分类的适用范围扩展到其他位置,已将特定地点的数据与当前对现代北极和温带冰川的冰川学研究的结果相关联。作为进行这种评估的前提,已经尝试了重建布伦格遗址的冰川历史。各种冰川沉积物的相似矿物学以及整套材料上广泛的岩土数据的可用性,使得该地点非常适合此目的。在介绍研究结果时,论文分为四个部分。作为背景,在第一部分中介绍了在Brenig进行的调查的方法和范围。在第二部分中,对最近的冰川沉积物的特征与布伦尼格的更新世材料进行了比较。该位置的地层学和冰川年代学在第三部分中进行了开发,而在第四部分中,则对该位置的岩土评价进行了介绍,并在冰川学框架内进行了设置,作为拟议分类的基础。

著录项

  • 作者

    Carter Trevor Graham.;

  • 作者单位
  • 年度 1983
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  • 原文格式 PDF
  • 正文语种 en
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