土石坝漫顶溃坝过程模拟技术研究进展

A state-of-the-art review on the simulation technologies of overtopping-induced breaching process of earth-rock dams

  • 摘要: 近年来气候变化导致极端降水事件频发,对土石坝的安全运行带来巨大挑战,而对土石坝漫顶溃坝过程的科学认知和合理评估是开展灾变防控和应急处置的关键。土石坝坝料临界起动条件与定量表征、漫顶溃坝溃口形态演化机制和溃口洪水流量过程数值模拟是土石坝漫顶溃坝过程模拟研究领域的热点和难点。本文从土石坝坝料冲蚀特性出发,系统介绍了土体冲蚀特性试验设备和测试方法,综述了无黏性和黏性坝料的临界起动切应力和坝料冲蚀速率定量表征方法;基于不同尺度的溃坝模型试验,分析了均质坝、心墙坝和面板坝漫顶溃坝溃口形态演化机制,揭示了水土耦合机制下溃口边坡的失稳模式和坝体防渗结构的破坏机理;从溃口洪峰流量经验分析、基于漫顶溃坝机理的简化和精细化分析等角度详细阐述了土石坝漫顶溃坝洪水数值分析方法,并对其适用范围和求解方法进行了评价。尽管当前已初步建立了土石坝漫顶溃坝过程模拟理论与技术框架,但仍面临材料和荷载不确定性下的坝料冲蚀参数确定、溃口发展过程精确表征和溃坝洪水高效数值求解等难题,未来仍需在多尺度试验装置、高精度测试技术和高效数值分析方法等方面取得突破,以提升土石坝漫顶溃坝过程模拟的准确性与实用性。

     

    Abstract: In recent years, climate change has triggered increasingly frequent extreme precipitation events, thereby posing significant challenges to the safe operation of earth-rock dams. The scientific understanding and reasonable assessment of the overtopping-induced breaching process of earth-rock dams are crucial for disaster prevention and emergency response. The critical initiation conditions and quantitative characterization of earth-rock dam materials, the evolution mechanism of the breach morphology, and the numerical simulation of breach flood hydrograph are key research areas and challenges in the simulation of the overtopping-induced breaching process of earth-rock dams. Starting from the erosion characteristics of earth-rock dam materials, this paper systematically introduces the experimental equipment and testing methods for soil erosion characteristics, and summarizes the quantitative characterization methods for the critical shear stress and erosion rates of non-cohesive and cohesive dam materials. Based on dam breaching model experiments at different scales, the overtopping-induced breach morphology evolution mechanisms on homogeneous dams, core-wall dams, and concrete-faced rockfill dams are analyzed, and the instability patterns of breach side slopes and the failure mechanisms of dam impervious structures under water-soil coupling mechanism are revealed. From the perspectives of empirical analysis of peak breach flow, and the simplified and detailed analyses based on the overtopping-induced breaching mechanism, this paper elaborates on the numerical analysis methods for overtopping-induced breaching flood of earth-rock dams, and evaluates their applicability and solution methods. Although the theoretical and technical framework for simulating the overtopping-induced breach process of earth-rock dams has been initially established, there are still some difficulties to overcome, such as determination of the erosion parameters of dam materials under the uncertainties of materials and loads, accurate characterization of the breach development process, and efficient solution of the dam breaching flood using numerical methods. In the future, there will be a continued need for breakthroughs in multi-scale test equipment, high-precision testing techniques, and efficient numerical analysis methods to enhance the accuracy and practicality in the simulation of overtopping-induced breaching process of earth-rock dams.

     

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