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The influence of rock fabric on excavation damage in the Lac Du Bonnet granite.

机译:Lac Du Bonnet花岗岩中岩体对开挖破坏的影响。

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摘要

The Canadian concept for disposing of nuclear fuel waste involves placing and sealing it in excavations 500 to 1000 m deep in plutonic rocks of the Canadian Shield. Investigations pertaining to the Canadian concept for used nuclear fuel waste disposal in plutonic rocks were conducted at AECL's Underground Research Laboratory (URL). The URL is excavated within the Archean granite of the Lac Du Bonnet batholith (LDBB), approximately 120 km northeast of Winnipeg, Manitoba, at the western edge of the Canadian Shield.; At the URL, AECL has undertaken a wide range of experiments to test the feasibility of burying nuclear fuel waste in granitic rocks. The investigations have included detailed mapping of geological features, stress measurement, and a recording of excavation response.; The purpose of this thesis is to show how the geological conditions affect excavation stability, in particular how the fabric of granite influences excavation damage development including overbreak around tunnel or shaft perimeters.; Most of the design of the excavations has been based on the assumption that the host granite is homogeneous (i.e. texturally and mechanically homogeneous). This thesis demonstrates, through a program of field observations and laboratory testing, that the Lac du Bonnet, and probably most granites, are highly heterogeneous and anisotropic at both the macro and the micro scale.; Field investigations included detailed mapping. This had four objectives: (1) to define the general site characteristics including: (a) the geology of the site, (b) the fault and fractures domains, and (c) the in-situ stress domains. This was supported by field and laboratory investigations including fracture, foliation and microcrack analyses. This work defined the nature and types of rock mass heterogeneities in the rock mass. (2) to locate and describe evidence where fabric anisotropy has influenced rock mass response. This was not restricted to only present-day excavation response, but also included observations from ancient faults and fractures, whose distribution and orientation provided the first hint of the anisotropic behaviour of the LDBB granite. (3) to characterize areas where excavation damage, including overbreak, occurred, and (4) to select and characterize areas where samples were collected for rock properties testing. (Abstract shortened by UMI.)
机译:加拿大处置核燃料废物的概念涉及将其放置并密封在加拿大盾构深岩中500至1000 m深的开挖中。在AECL的地下研究实验室(URL)进行了有关加拿大概念化石堆中废旧核燃料废物处理的调查。该网址是在加拿大盾之西边缘马尼托巴省温尼伯东北约120公里的Lac Du Bonnet岩基(LDBB)的太古花岗岩中开挖的。 AECL在URL上进行了广泛的实验,以测试将核燃料废物掩埋在花岗岩中的可行性。调查包括详细的地质特征图,应力测量和开挖反应记录。本文的目的是说明地质条件如何影响开挖稳定性,特别是花岗岩结构如何影响开挖破坏的发展,包括隧道或竖井周长的突围。基坑开挖的大多数设计都基于以下假设:主体花岗岩是均质的(即质地和机械均质)。通过现场观察和实验室测试,本论文证明了Lac du Bonnet以及可能的大多数花岗岩在宏观和微观上都是高度异质性和各向异性的。实地调查包括详细的地图绘制。这有四个目标:(1)定义一般的站点特征,包括:(a)站点的地质,(b)断层和裂缝域,以及(c)地应力区域。这得到了现场和实验室研究的支持,包括断裂,叶面和微裂纹分析。这项工作定义了岩体中岩体非均质性的性质和类型。 (2)找到并描述织物各向异性影响岩体响应的证据。这不仅限于当今的开挖响应,还包括来自古代断层和裂缝的观测,其分布和方向为LDBB花岗岩的各向异性行为提供了第一点提示。 (3)表征发生开挖破坏(包括倾覆)的区域,以及(4)选择并表征采集样本进行岩石性质测试的区域。 (摘要由UMI缩短。)

著录项

  • 作者

    Everitt, Richard Allen.;

  • 作者单位

    The University of Manitoba (Canada).;

  • 授予单位 The University of Manitoba (Canada).;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 381 p.
  • 总页数 381
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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