Spatio-temporal analysis and simulation on shallow rainfall-induced landslides in China using landslide susceptibility dynamics and rainfall I-D thresholds

被引:0
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作者
WeiYue Li
Chun Liu
Marco Scaioni
WeiWei Sun
Yu Chen
DongJing Yao
Sheng Chen
Yang Hong
KaiHang Zhang
GuoDong Cheng
机构
[1] Shanghai Normal University,Institute of Urban Study
[2] Chinese Academy of Sciences,Cold and Arid Region Environmental and Engineering Research Institute
[3] Tongji University,College of Surveying and Geo
[4] Politecnico Milano,Informatics
[5] Ningbo University,Department of Architecture, Built Environment and Construction Engineering
[6] Shandong Academy of Building Research,College of Architectural Engineering, Civil Engineering and Environment
[7] Shanghai Normal University,Department of Geography
[8] Sun Yat-sen University,School of Atmospheric Sciences
[9] Guangxi Teachers Education University,Key Laboratory of Beibu Gulf Environmental Evolution and Resources Utilization
[10] University of Oklahoma,School of Civil Engineering and Environmental Sciences
[11] Tsinghua University,Department of Hydraulic Engineering
[12] Shanghai Normal University,Institute of Tourism
来源
关键词
Rainfall-induced landslides; Susceptibility; Rainfall I-D thresholds; Spatio-temporal; Simulation;
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中图分类号
学科分类号
摘要
An empirical simulation method to simulate the possible position of shallow rainfall-induced landslides in China has been developed. This study shows that such a simulation may be operated in real-time to highlight those areas that are highly prone to rainfall-induced landslides on the basis of the landslide susceptibility index and the rainfall intensity-duration (I-D) thresholds. First, the study on landslide susceptibility in China is introduced. The entire territory has been classified into five categories, among which high-susceptibility regions (Zone 4- ‘High’ and 5-‘Very high’) account for 4.15% of the total extension of China. Second, rainfall is considered as an external triggering factor that may induce landslide initiation. Real-time satellite-based TMPA 3B42 products may provide real rainfall spatial and temporal patterns, which may be used to derive rainfall duration time and intensity. By using a historical record of 60 significant past landslides, the rainfall I-D equation has been calibrated. The rainfall duration time that may trigger a landslide has resulted between 3 hours and 45 hours. The combination of these two aspects can be exploited to simulate the spatiotemporal distribution of rainfall-induced landslide hazards when rainfall events exceed the rainfall I-D thresholds, where the susceptibility category is ‘high’ or ‘very high’. This study shows a useful tool to be part of a systematic landslide simulation methodology, potentially providing useful information for a theoretical basis and practical guide for landslide prediction and mitigation throughout China.
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页码:720 / 732
页数:12
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