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TANG Yao, WANG Lijuan, SUN Yu, et al. Emergency detection and rescue analysis of flash flood and debris flow inearthquake-prone areas based on remote sensing technology: A case study of "7·20" disaster in Malie Township of Hanyuan County[J]. Geological Survey of China, 2025, 12(2): 112-119. DOI: 10.19388/j.zgdzdc.2024.283
Citation: TANG Yao, WANG Lijuan, SUN Yu, et al. Emergency detection and rescue analysis of flash flood and debris flow inearthquake-prone areas based on remote sensing technology: A case study of "7·20" disaster in Malie Township of Hanyuan County[J]. Geological Survey of China, 2025, 12(2): 112-119. DOI: 10.19388/j.zgdzdc.2024.283

Emergency detection and rescue analysis of flash flood and debris flow inearthquake-prone areas based on remote sensing technology: A case study of "7·20" disaster in Malie Township of Hanyuan County

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  • Received Date: August 07, 2024
  • Revised Date: March 10, 2025
  • Available Online: May 15, 2025
  • In order to effectively enhance the emergency monitoring and rescue capabilities for sudden natural disasters in earthquake-prone areas, the researchers in this paper took the sudden flash flood and debris flow disaster in Xinhua Village of Malie Township in Hanyuan County of Sichuan Province as an example and used domestic high-resolution satellites and unmanned aerial vehicle remote sensing technology to analyze its terrain and landform characteristics of the disaster basin. The number of buildings affected by the disaster were interpreted, and the number of affected population was estimated. Besides, the disaster situation was predicted, and the emergency detection and rescue analysis were conducted. The results showed that about 3 000 people were affected by the disaster, and 400 disaster preparedness tents and 6.6 t/d of drinking water were prepared. The nearest rescue team to the disaster area was Hanyuan County Fire and Rescue Brigade, located 15.8 km away by a mountain road. There were 13 health and epidemic prevention forces distributed in and around the area, and 5 mining enterprises were affected. Forty-eight houses were destroyed and 25 houses were damaged, with 7 roads cut off due to the disaster. Three rescue areas were designated in the key affected areas, and a total of 18 search and rescue focus areas were delineated, including 4 upstream and 14 downstream areas. Priority has been given to two rescue lifelines leading to the disaster area in Malie Township. And it is recommended to use Xinhua Primary School and Malie Township Central Primary School in Malie Township as temporary relocation sites. The disaster detection and rescue analysis method based on remote sensing technology has great significance for improving the pertinence of on-site personnel search and rescue and emergency preparedness for disasters, and enhancing the efficiency of emergency detection and personnel search and rescue in the flash flood and debris flow of the western Sichuan Province.

  • [1]
    靳文, 张国涛, 邹强, 等. 震后泥石流活跃期的新认识——以四川汶川"8·20"灾害事件为例[J]. 山地学报, 2019, 37(5): 787-796.

    Jin W, Zhang G T, Zou Q, et al. A new understanding of the activity behavior of post-earthquake debris flow: Taking "8·20" event in Wenchuan, Sichuan, China as an example[J]. Mountain Research, 2019, 37(5): 787-796.
    [2]
    马文瑞, 肖建强, 崔泽宇. 陕西省长安区"8·11"突发山洪泥石流灾害形成机理分析及防御思考[J]. 地下水, 2024, 46(4): 152-154.

    Ma W R, Xiao J Q, Cui Z Y. Analysis of the formation mechanism of "8·11" sudden flash flood and mudslide disaster in Chang'an District, Shaanxi Province, and thoughts on defense[J]. Ground Water, 2024, 46(4): 152-154.
    [3]
    李钰, 甘滨蕊, 王协康, 等. 四川省甘洛县2019年群发性山洪泥石流灾害的形成机理[J]. 水土保持通报, 2020, 40(6): 281-287.

    Li Y, Gan B R, Wang X K, et al. Formation mechanism of group flash flood/debris flow disasters in Ganluo County, Sichuan Province in 2019[J]. Bulletin of Soil and Water Conservation, 2020, 40(6): 281-287.
    [4]
    柳清文. 福建三明市区后山小流域山洪泥石流形成条件分析及危险性评价研究[D]. 成都: 成都理工大学, 2020.

    Liu Q W. Formation Condition Analysis and Risk Assessment of Mountain Torrents and Debris Flows in Houshan Small Watershed of Sanming City, Fujian Province[D]. Chengdu: Chengdu University of Technology, 2020.
    [5]
    吴杭. 基于SMPHSM-HGCR改进的CF模型对山洪与泥石流灾害敏感性评价——以内蒙古狼山中西段为例[D]. 北京: 中国地质大学(北京), 2019.

    Wu H. The CF Model Enhanced by SMPHSM-HGCR for Evaluating the Hazard Susceptibility of the Floods and Debris Avalanches in the mid-west Segment of Langshan Range, Inner Mongolia[D]. Beijing: China University of Geosciences (Beijing), 2019.
    [6]
    曹琛. 北京市房山区西区沟小流域山洪泥石流灾害预测预警研究[D]. 长春: 吉林大学, 2017.

    Cao C. Study of Flash Flood and Debris Flow Disaster Prediction and Early Warning System for Xiqugou Catchment, Fangshan District, Beijing[D]. Changchun: Jilin University, 2017.
    [7]
    翟兆斌. 雅安市汉源县范家沟泥石流发育特征及危险性评价[D]. 成都: 西南交通大学, 2022.

    Zhai Z B. Development Characteristics and Risk Assessment of Debris Flow in Fanjia Gully, Hanyuan County, Ya'an City[D]. Chengdu: Southwest Jiaotong University, 2022.
    [8]
    徐奕梓, 樊晓一, 张友谊, 等. 四川省汉源县中海村滑坡动力学特征数值分析[J]. 中国地质调查, 2022, 9(4): 102-111. doi: 10.19388/j.zgdzdc.2022.04.12

    Xu Y Z, Fan X Y, Zhang Y Y, et al. Numerical analysis on dynamic characteristics of Zhonghai Village landslide in Hanyuan County of Sichuan Province[J]. Geological survey of China, 2022, 9(4): 102-111. doi: 10.19388/j.zgdzdc.2022.04.12
    [9]
    唐尧, 王立娟, 赵娟, 等. 遥感技术在"6·17"丹巴堵江泥石流灾害链灾区应急救援抢险决策中的应用[J]. 中国地质调查, 2020, 7(5): 114-122. doi: 10.19388/j.zgdzdc.2020.05.13

    Tang Y, Wang L J, Zhao J, et al. Application of remote sensing technology in emergency rescue decision about "6·17" Danba River debris flow disaster chain[J]. Geological survey of China, 2020, 7(5): 114-122. doi: 10.19388/j.zgdzdc.2020.05.13
    [10]
    国务院第七次全国人口普查领导小组办公室. 中国人口普查年鉴-2020[M]. 北京: 中国统计出版社, 2022.

    Office of the Leading Group of the State Council for the Seventh National Population Census. China Population Census Yearbook-2020[M]. Beijing: China Statistics Press, 2022.
    [11]
    GB/T 44010—2024救灾帐篷通用技术要求[S].

    GB/T 44010—2024 Disaster Relief Tents-General Technical Requirements[S].
    [12]
    DB41/T 2471—2023应急与备用水源管理技术规范[S].

    DB41/T 2471—2023 Technical Specification for Emergency and Backup Water Source Management[S].
    [13]
    张磊. 面向地震灾情时序变化的应急救援物资需求动态预测研究[J]. 灾害学, 2018, 33(3): 161-164.

    Zhang L. Research on dynamic demand prediction of emergency relief materials oriented to the temporal and spatial change of earthquake disaster losses[J]. Journal of Catastrophology, 2018, 33(3): 161-164.
    [14]
    唐尧, 王立娟, 邓琮, 等. 泥石流灾害应急救援辅助决策研究——以小金县城隍庙沟泥石流为例[J]. 国土资源信息化, 2021(3): 54-60.

    Tang Y, Wang L J, Deng C, et al. Research on aided decision-making for emergency rescue of debris flow disasters: A case study of debris flow in Chenghuangmiaogou, Xiaojin County[J]. Land and Resources Informatization, 2021(3): 54-60.
    [15]
    单诗涵, 王旭红, 李廷友. 四川汉源万工集镇"7·27"灾后泥石流预测分析与综合防治[J]. 中国地质灾害与防治学报, 2012, 23(4): 6-10.

    Shan S H, Wang X H, Li T Y. Debris flow prediction and comprehensive treatment of "7·27" post-disaster of Wangong Town, Hanyuan County, Sichuan Province[J]. The Chinese Journal of Geological Hazard and Control, 2012, 23(4): 6-10.

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