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水力发电学报 ›› 2026, Vol. 45 ›› Issue (7): 39-62.doi: 10.11660/slfdxb.20260703

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堤防大溃口封堵:特征、进占过程与新技术

  

  • 出版日期:2026-07-25 发布日期:2026-07-25

Characteristics, advancing process, and new technologies for closure of embankment large breaches

  • Online:2026-07-25 Published:2026-07-25

摘要: 堤防溃决作为一种典型的突发性灾害,其堵口抢险过程因地、因时、因情而不同,是一项需要综合决策并科学组织实施的系统性抢险工程。近年来,在极端暴雨和洪水频发的背景下,堤防大溃口灾害时有发生,破坏性强、处置难度大。如何实现堤防大溃口的快速、高效封堵,已成为防汛抢险领域亟需解决的重要科学与技术问题。通过案例收集、数据统计、理论分析等方法,总结了堤防溃口特征、堵口时机、封堵物料与技术等方面的研究现状,从新的视角系统梳理了抛(沉)投材料体系及其适用场景,分析了连续快速进占和反复抢堵进占两种典型进占模式,并给出了堵口历时的实用计算方法。最后,基于溃口水力条件和形态特征分析,构建了堤防溃口现代封堵技术体系,并进一步指出了复杂大溃口新型快速封堵技术的发展方向,相关成果可为提升堤防溃口应急处置能力提供参考。

关键词: 堤防, 溃口封堵, 进占, 阻拦协同

Abstract: An embankment breach is a typical sudden disaster, and the process of breach closure varies with different locations, times, and conditions. It is a systematic emergency project that requires comprehensive decision-making and scientific organization for implementation. In recent years, under the increasing frequency of extreme rainfall and flood disasters, large-scale embankment breaches have occurred more frequently, characterized by severe damage and great difficulty in emergency response. Achieving rapid and efficient closure of large embankment breaches has therefore become an urgent scientific and technological challenge in the field of flood control and emergency rescue. Through case collection, data statistics, and theoretical analysis, this study systematically summarizes the current research status on embankment breach characteristics, closure timing, materials, and technologies. From a new perspective, we comprehensively review the system of pouring (or sinking) materials and its application scenarios. Furthermore, two typical advancement modes are analyzed: continuous rapid advancement and multiple discontinuous advancement, along with practical calculation methods for closing duration. Finally, based on analyses of the hydraulic conditions and morphological characteristics of breaches, we construct a modern technical system for embankment breach closure, and identify future development directions of new rapid closure technologies for complex large breaches. The results provide theoretical support and engineering references for enhancing emergency response capacity in embankment management.

Key words: embankment, breach closure, advancement, block and intercept collaboration

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