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    基于大语言模型(LLMs)的地质灾害风险防控体系建设

    Construction of the geological hazard risk mitigation and management system powered by Large Language Models (LLMs)

    • 摘要:
      研究目的 在全球气候变化与人类活动日趋剧烈的背景下,地质灾害愈发呈现出突发、多发、复杂等特征,对现有地质灾害风险防控体系的应对能力提出了新的挑战,亟需探索新时期地质灾害风险管理的智能化路径。
      研究方法 本文系统回顾了近年来国内外地质灾害风险防控领域的研究进展,聚焦中国传统防控体系在风险识别、评估与管控环节面临的突出瓶颈,探讨了其技术赋能的发展过程。在此基础上,提出引入大语言模型(Large Language Models, LLMs)作为核心支撑的智能化地质灾害风险防控框架。
      研究结果 本研究设计了一个基于LLMs的地质灾害风险防控体系,贯穿“智能识别–动态评估–协同管理”的全过程,推动地质灾害风险防控向智慧化、系统化方向转型。
      结论 通过大语言模型与地质灾害防控场景的深度融合,有望为实现地质灾害防治现代化提供智能化的系统性解决方案。

       

      Abstract:
      This paper is the result of geological hazard survey engineering.
      Objective  Against the backdrop of global climate change and intensifying human activities, geological hazards are increasingly characterized by sudden onset, high frequency, and growing complexity, posing new challenges to existing systems for geological hazards risk mitigation and management. It is therefore imperative to explore intelligent pathways for geological hazards risk mitigation and management in the new era.
      Methods  This study systematically reviews domestic and international research progress in geological hazards risk mitigation and management in recent years. Focusing on the major bottlenecks in risk identification, assessment, and control within China’s traditional prevention and control system, it further examines the evolution of technology-enabled approaches in this field. On this basis, an intelligent framework for geological hazards risk mitigation and management supported by Large Language Models (LLMs) is proposed.
      Results  A LLMs–based system for geological hazards risk mitigation and management is designed to cover the full process of “intelligent identification–dynamic assessment–collaborative management”, thereby promoting the transformation of geological hazards risk mitigation and management toward a more intelligent and systematic mode.
      Conclusions  The deep integration of LLMs into geological hazard prevention and mitigation scenarios is expected to provide an intelligent and systematic solution for advancing the modernization of geological hazard prevention and mitigation.

       

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