Study on Antiseepage Measures for Earth-Rock Dam Reservoir in Super-Intense Karst Area: Research on Curtain Grouting Scheme for Comprehensive Seepage Prevention

IF 5.1 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Mingming Wang, Chunying Shen, Jihong Duan, Ming Ye, Qiang Xu
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Abstract

Constructing reservoirs in karst regions is a challenge that dam engineers around the world are very unwilling to face. The antiseepage of reservoirs is one of the urgent problems to be solved in the construction of reservoirs in karst regions. Adopting the field test method combined with advanced geological exploration instruments and survey technologies, the antiseepage measures are studied in the construction of a reservoir located within a China’s super karst region. Through a detailed hydrogeological survey, the reservoir water seeps out through the downstream primary and secondary fracture points along the limestone dissolution erosion zone through the upstream sinkholes. According to the topography, lithology, submerged area, and seepage form and direction in the reservoir area, a vertical grouting curtain is proposed to block the seepage of reservoir water to the downstream. Based on the normal water level, impermeable layer (slate) distribution, and the lowest discharge datum plane, the left, right, and bottom boundaries of the vertical curtain grouting are determined, and the maximum grouting depth reaches 131.75 m. The double curtain grouting method is proposed to reduce the construction difficulty of the super-deep grouting curtain in the intense karst area, and alongside a method is put forward to integrate the upper and lower curtains into a cohesive unit. Practical validation through the Yundong Reservoir project demonstrates the efficacy of the proposed treatment scheme, ensuring seepage-free performance for 6 years under normal water levels. The findings lay the groundwork for further studies exploring specific challenges encountered during curtain grouting construction in karst environments, which include underground karst caves, strong corrosion zones, and underground large flow and high-speed pipeline inflow.

Abstract Image

超强岩溶地区土石坝水库防渗措施研究——帷幕灌浆综合防渗方案研究
在喀斯特地区修建水库是全世界水坝工程师都不愿面对的挑战。水库防渗是岩溶地区水库建设中亟待解决的问题之一。采用现场试验方法,结合先进的地质勘探仪器和测量技术,对中国超喀斯特地区某水库建设中的防渗措施进行了研究。通过详细的水文地质调查,水库水沿灰岩溶蚀带从下游的主、次裂缝点经上游的陷坑向外渗漏。根据库区的地形、岩性、淹没面积、渗流形式和方向,提出垂直灌浆帷幕封堵库区水向下游的渗流。根据正常水位、不透水层(板岩)分布及最低排水基准面,确定竖向帷幕注浆的左、右、底边界,最大注浆深度为131.75 m。为降低强岩溶区超深注浆帷幕的施工难度,提出了双帷幕注浆方法,并提出了上下帷幕一体化的方法。通过云东水库工程的实际验证证明了所提出的处理方案的有效性,在正常水位下保证了6年的无渗水性能。研究结果为进一步研究地下溶洞、强腐蚀带、地下大流量高速管道流入等岩溶环境下帷幕注浆施工的具体挑战奠定了基础。
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来源期刊
Structural Control & Health Monitoring
Structural Control & Health Monitoring 工程技术-工程:土木
CiteScore
9.50
自引率
13.00%
发文量
234
审稿时长
8 months
期刊介绍: The Journal Structural Control and Health Monitoring encompasses all theoretical and technological aspects of structural control, structural health monitoring theory and smart materials and structures. The journal focuses on aerospace, civil, infrastructure and mechanical engineering applications. Original contributions based on analytical, computational and experimental methods are solicited in three main areas: monitoring, control, and smart materials and structures, covering subjects such as system identification, health monitoring, health diagnostics, multi-functional materials, signal processing, sensor technology, passive, active and semi active control schemes and implementations, shape memory alloys, piezoelectrics and mechatronics. Also of interest are actuator design, dynamic systems, dynamic stability, artificial intelligence tools, data acquisition, wireless communications, measurements, MEMS/NEMS sensors for local damage detection, optical fibre sensors for health monitoring, remote control of monitoring systems, sensor-logger combinations for mobile applications, corrosion sensors, scour indicators and experimental techniques.
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