Desiccation and Interface Detachment of A Composite Cutoff Wall under Unsaturated Conditions
编号:125 访问权限:仅限参会人 更新:2026-07-29 13:39:08 浏览:2次 张贴报告

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摘要
Vertical cutoff walls serve as a primary engineering treatment for the containment of contaminated sites, functioning as essential physical barriers to intercept the migration of hazardous plumes. Compared to traditional soil-bentonite slurry walls, composite cutoff walls provide superior hydraulic reliability and chemical attenuation, yet their integrity and performance in vertical configurations, particularly in unsaturated states, remain poorly understood.
This study investigates the initial 4-month consolidation and desiccation behaviors of a geomembrane-soil-bentonite cutoff wall under unsaturated conditions at a municipal solid waste landfill, using an innovative ''locking joint'' sensor installation method to monitor the evolution of water content, pore pressure, horizontal stress and temperature. Results reveal a pronounced depth-dependent desiccation stratification, where the shallow zone becomes unsaturated within 10 days and horizontal stresses drop below 20 kPa across all depths, significantly lower than saturated barriers. The typical stress distribution and desiccation-induced shrinkage led to GMB-backfill interface detachment, functioning as preferential flow paths and causing synchronous pressure jumps during rainfall periods.
The findings underscore wall's structural vulnerability under drying conditions and provide optimization strategies to enhance its long-term service performance.
关键词
Composite cutoff wall,Soil-bentonite,desiccation cracking,Field test,Membrane-backfill interface
报告人
Zheng-Kai Wang
Student Zhejiang University

稿件作者
Zheng-Kai Wang Zhejiang University
Xiao-Gang Guo Zhejiang University
Si Chen Zhejiang University
Yun-Min Chen Zhejiang University
Yu-Chao Li Zhejiang University
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重要日期
  • 会议日期

    08月09日

    2026

    08月13日

    2026

  • 08月09日 2026

    初稿截稿日期

  • 08月12日 2026

    注册截止日期

主办单位
International Consortium on Geo-disaster Reduction (ICGdR)
UNESCO Chair on Geoenvironmental Disaster Reduction
承办单位
The Hong Kong Polytechnic University
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