ISSN 1003-8035 CN 11-2852/P

    三峡库区地质灾害应急救援处置能力提升:基于 “抢险救援-避险安置”双核心的体系优化

    Improving geohazard emergency rescue and response capacity in the Three Gorges Reservoir area: System optimization based on the dual cores of “emergency rescue” and “evacuation and resettlement”

    • 摘要: 针对三峡库区地质灾害突发性、链生性与隐蔽性特征,以及传统应急救援体系存在的功能割裂、协同不足等问题,本研究旨在构建以“抢险救援”与“避险安置”双核心协同为基础的现代化应急救援体系,提升库区地质灾害应急救援处置能力。立足库区地质环境复杂性与灾害应对现实需求,首先系统分析三峡库区地质灾害发育特征和风险以及诊断现有应急救援体系的核心短板;进而构建“指挥中枢—调度枢纽—执行终端”三级协同的“1+2+2N”应急救援体系优化框架;最后从体系构建、基础设施协同、技术赋能、机制创新等维度提出能力提升路径。形成了覆盖库区全域、水陆协同的三级应急救援体系,明确了各级架构的功能定位与运行逻辑,提出了包括基础设施强化、技术装备升级、协同机制优化等在内的关键实施路径,有效弥补了传统体系碎片化、响应滞后等短板。研究为山地库区地质灾害应急救援体系现代化提供了理论支撑与实践参考,并展望了智能化、全域化、韧性化的远期升级方向,对提升库区防灾减灾救灾能力具有指导意义。

       

      Abstract: Geological hazards in the Three Gorges Reservoir area are abrupt, cascading, and concealed, while the traditional emergency rescue system remains functionally fragmented and insufficiently coordinated. This study aims to build a modern emergency response system based on the dual-core synergy of “emergency rescue” and “evacuation and resettlement” to enhance regional geohazard emergency rescue and response capacity. Considering the geological complexity of the reservoir area and the practical needs of disaster response, the core weaknesses of the existing emergency rescue system are first systematically diagnosed. A three-level collaborative “1+2+2N” optimization framework, comprising a “command center-dispatch hub-execution terminal” structure, is then constructed. Capacity-enhancement pathways are proposed in terms of system construction, infrastructure coordination, technological empowerment, and mechanism innovation. A three-level emergency rescue system covering the entire reservoir area and integrating land-water coordination is developed. The functional positioning and operational logic of each level are clarified. Key implementation pathways, including infrastructure reinforcement, technological and equipment upgrading, and coordination-mechanism optimization, are proposed to address fragmentation, delayed response, and other weaknesses of the traditional system. This study provides theoretical support and practical reference for modernizing geohazard emergency rescue systems in mountainous reservoir areas. It also outlines long-term upgrade directions toward intelligent, full-coverage, and resilient operation, offering guidance for improving disaster prevention, mitigation, and relief capacity in the reservoir area.

       

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