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    西藏某地区泥石流地质灾害孕灾条件与成灾机制研究

    Disaster-Prone Conditions and Formation Mechanisms of Debris Flow Geological Hazards in an Area of Xizang

    • 摘要: 该文结合历年调查数据和最新野外调查成果,系统总结了西藏某地区泥石流灾害的发育特征。采用数学统计方法,从流域面积、地势起伏度、坡度、相对高差、Melton比率和崩滑密度等多维度深入分析区域泥石流的地质孕灾条件,揭示其成灾机制。研究表明,该地区泥石流孕灾条件复杂,适中的流域面积、较大的地势起伏度、陡峻的坡度、显著的相对高差及Melton比率是泥石流频发的关键影响因素。泥石流的形成机理主要分为暴雨型和雪崩型两种类型;泥石流成灾模式多样,主要包括冲毁冲击型、淤埋型和阻塞型三种,每种模式呈现出独特的破坏机制和影响范围。为减少灾害损失,需根据各类泥石流的特点,结合岩土工程和生物工程措施,制定科学的防治策略。该研究成果旨在为该地区地质灾害风险管理提供科学依据,并为类似地质背景区域的灾害治理提供借鉴。

       

      Abstract: This study systematically summarizes the development characteristics of debris flows in an area of Xizang by integrating historical survey data and the latest field investigation results. A mathematical statistical approach is employed to analyze the geological disaster-prone conditions of debris flows within the area, focusing on multiple factors, including watershed area, relief amplitude, slope gradient, relative height difference, Melton ratio, and landslide density, to reveal the mechanisms of disaster formation. The findings indicate that the disaster-prone conditions for debris flows in this area are complex. Moderate watershed areas, significant relief amplitudes, steep slopes, pronounced relative height differences and Melton ratios are identified as key factors contributing to the high frequency of debris flows. The mechanisms of debris flow formation can be categorized into two primary types: rainfall-induced and avalanche-induced. The disaster-causing patterns of debris flows are diverse, with three main types identified: erosion and impact type, burial type and blockage type. Each type exhibits distinct destructive mechanisms and impact slope. To reduce disaster losses, it is essential to develop scientific prevention and mitigation strategies based on the characteristics of debris flows, integrating geotechnical engineering and bioengineering measures. The research results aim to provide a scientific basis for the risk management of geological disasters in the region, and provide references for the disaster management in similar geological background areas.

       

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