ISSN 1009-6248CN 61-1149/P 双月刊

主管单位:中国地质调查局

主办单位:中国地质调查局西安地质调查中心
中国地质学会

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    刘港,贾俊,张戈,等. 甘肃积石山地震液化型泥流特征、成因及其对黄河上游盆地地震次生灾害风险评估的启示[J]. 西北地质,2024,57(2):220−229. doi: 10.12401/j.nwg.2024015
    引用本文: 刘港,贾俊,张戈,等. 甘肃积石山地震液化型泥流特征、成因及其对黄河上游盆地地震次生灾害风险评估的启示[J]. 西北地质,2024,57(2):220−229. doi: 10.12401/j.nwg.2024015
    LIU Gang,JIA Jun,ZHANG Ge,et al. Characteristics and Initiation Mechanism of the Liquefied Mudflow Caused by Jishishan Earthquake in Gansu Province and Its Enlightenment on Risk Assessment of Secondary Earthquake Disasters in the Upper Yellow River Basin[J]. Northwestern Geology,2024,57(2):220−229. doi: 10.12401/j.nwg.2024015
    Citation: LIU Gang,JIA Jun,ZHANG Ge,et al. Characteristics and Initiation Mechanism of the Liquefied Mudflow Caused by Jishishan Earthquake in Gansu Province and Its Enlightenment on Risk Assessment of Secondary Earthquake Disasters in the Upper Yellow River Basin[J]. Northwestern Geology,2024,57(2):220−229. doi: 10.12401/j.nwg.2024015

    甘肃积石山地震液化型泥流特征、成因及其对黄河上游盆地地震次生灾害风险评估的启示

    Characteristics and Initiation Mechanism of the Liquefied Mudflow Caused by Jishishan Earthquake in Gansu Province and Its Enlightenment on Risk Assessment of Secondary Earthquake Disasters in the Upper Yellow River Basin

    • 摘要: 北京时间2023年12月18日23点59分30秒,甘肃省临夏州积石山县发生Ms 6.2级浅源地震,地震在青海省民和县中川乡诱发了一处同震特大型规模泥流灾害,造成了特大型灾难事件的发生。笔者采用现场调查、无人机摄影测量、现场取样及室内测试等研究方法对此次泥流灾害发育特征及成因进行分析。结果表明:①该泥流具有典型沟谷型泥石流平面特征,形成区、流通区和堆积区分界明显,泥流主要物源为山前洪积粉质黏土。②地震、降雪消融、农田冬灌、低温冻结,为泥流提供了初始动力并抬升了局部地下水位,是该泥流灾害的主要诱因;地形坡度、地层岩性,为泥流提供了后续运动势能和振动液化条件,是该泥流灾害的内因。③泥流运移过程中存在侧向和底部铲刮效应,尤其在3处流向改变区侧向铲刮、局部堆积显著,最终快速流入沟口金田村和草滩村。分析结果可为官亭盆地乃至黄河上游沉积盆地地震次生灾害风险评价工作提供思路与理论依据。

       

      Abstract: At 23:59:30 Beijing time on December 18, 2023, an Ms 6.2 shallow earthquake occurred in Jishishan County, Linxia Prefecture, Gansu Province. The earthquake triggered a coseismic giant mudflow in Zhongchuan Township, Minhe County, Qinghai Province, resulting in a catastrophic event. Research methods such as on-site investigation, drone photogrammetry, sampling, and experimental testing were adopted to analyze the development characteristics and causes of this mudflow hazard. The results indicate that: ① The mudflow has typical planar characteristics of valley-type debris flow, with clear boundaries between the formation area, the circulation area, and the accumulation area. The main source of the mudflow is the piedmont pluvial silty clay. ② Earthquake provides initial momentum, while melting snow, winter irrigation of farmland, and low temperature freezing raise the local groundwater level, which are the main triggering factors of the mudflow. The topographic slope provides subsequent kinetic energy, and the geological lithology provides condition for vibrational liquefaction, which are the inherent causes of the mudflow. ③ There are lateral and bottom scraping effects in the process of mudflow transportation, especially in the three flow direction changing areas, where lateral scraping and local accumulation are significant. Eventually, it quickly flows into Jintian Village and Caotan Village at the mouth of the gully. The results obtained can provide ideas and theoretical basis for the risk assessment of secondary disasters caused by earthquakes in the Guanting Basin and even the sedimentary basins in the upper reaches of the Yellow River.

       

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