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Excavation-induced relaxation effects and hydraulic conductivity variations in the surrounding rocks of a large-scale underground powerhouse cavern system

机译:挖掘诱导的放松效应和大规模地下电力室洞穴系统周围岩石的液压电导率变化

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摘要

Located in the middle reach of Yalong River in China, the Jinping-I Hydropower Station Consists of a large-scale cavern system for water conveyance and power generation. Compared to other typical large-scale underground powerhouse cavern systems in Southwestern China, the construction site is characteristic of higher in situ geostresses, lower uniaxial compressive strength (UCS) and poorer quality of the surrounding rocks, resulting in greater depth of the disturbed zone. In this study, the excavation-induced relaxation effects and their impacts on the hydraulic conductivity variations and seepage behaviors in the surrounding rocks of the Jinping-I underground powerhouse caverns were assessed with site characterization data and numerical simulations. The excavation-induced disturbance zones around the caverns were modeled using the plastic yield zone predicted with an equivalent elasto-plastic model and a constant deviatoric stress criterion based on the Hoek-Brown parameters of the surrounding rocks, respectively. The predicted results agree rather well with the disturbed zones detected by the in situ acoustic wave velocity measurements and borehole TV images. The excavation-induced permeability changes in the surrounding rocks were characterized with a strain-dependent hydraulic conductivity model that accounts for the development patterns and deformation behaviors of the critically-oriented fractures. The seepage behaviors with consideration of the permeability changes in the surrounding rocks were modeled with a variational inequality method at a steady state, and the numerical results imply the significance of proper characterizations of the excavation-induced disturbance effects and permeability changes in better understanding the groundwater flow and its controlled effect in the surrounding rocks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:金平-I水电站位于中国的亚龙江中部,包括一个用于水输送和发电的大型洞穴系统。与中国西南部的其他典型的大型地下电力洞穴系统相比,施工现场是原位地球节的特点,较低的单轴抗压强度(UCS)和周围岩石的较差质量,导致更大的受扰动区域的深度。在这项研究中,通过现场表征数据和数值模拟评估了挖掘诱导的松弛效应及其对金平-I地下促力洞穴周围岩石的液压导电变化和渗流行为的影响。使用具有等效弹塑性模型的塑料屈服区和基于周围岩石的Hoek-Brown参数的恒定偏离引伸标准来建模洞穴周围的挖掘诱导的扰动区域。预测结果与由原位声波速度测量和钻孔电视图像检测到的受干扰区域相当吻合。通过应变依赖性液压导电性模型表征周围岩石中的挖掘诱导的渗透性变化,其考虑了临界裂缝的显影模式和变形行为。考虑到周围岩石中的渗透性变化的渗流行为在稳定状态下采用变分不等式方法进行建模,数值结果意味着挖掘引起的扰动效应和渗透性变化的适当特征的重要性,更好地理解地下水流动及其对周围岩石的控制效果。 (c)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2015年第6期|253-267|共15页
  • 作者单位

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China|Wuhan Univ Minist Educ Key Lab Rock Mech Hydraul Struct Engn Wuhan 430072 Peoples R China;

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China|Wuhan Univ Minist Educ Key Lab Rock Mech Hydraul Struct Engn Wuhan 430072 Peoples R China;

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China|Wuhan Univ Minist Educ Key Lab Rock Mech Hydraul Struct Engn Wuhan 430072 Peoples R China;

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China|Wuhan Univ Minist Educ Key Lab Rock Mech Hydraul Struct Engn Wuhan 430072 Peoples R China;

    Wuhan Univ State Key Lab Water Resources & Hydropower Engn S Wuhan 430072 Peoples R China|Wuhan Univ Minist Educ Key Lab Rock Mech Hydraul Struct Engn Wuhan 430072 Peoples R China|Nanchang Univ Sch Civil Engn & Architecture Nanchang 330031 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Excavation-induced relaxation zone; Underground powerhouse cavern system; Excavation-induced permeability variation; Seepage flow; Jinping-I Hydropower Station;

    机译:挖掘诱导的松弛区;地下电力室洞穴系统;挖掘诱导的渗透率变化;渗流流动;金平-i水电站;
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