Integration of a limit-equilibrium model into a landslide early warning system

被引:0
作者
Benni Thiebes
Rainer Bell
Thomas Glade
Stefan Jäger
Julia Mayer
Malcolm Anderson
Liz Holcombe
机构
[1] Nanjing Normal University,School of Geography Science
[2] University of Vienna,Department of Geography and Regional Research
[3] Geomer GmbH,Department of Geography
[4] University of Bonn,Department of Civil Engineering
[5] University of Bristol,undefined
来源
Landslides | 2014年 / 11卷
关键词
Landslide; Early warning system; CHASM (Combined Hydrology and Stability Model); Physically based; Modelling; Web processing service; Web notification service; Swabian Alb;
D O I
暂无
中图分类号
学科分类号
摘要
Landslides are a significant hazard in many parts of the world and exhibit a high, and often underestimated, damage potential. Deploying landslide early warning systems is one risk management strategy that, amongst others, can be used to protect local communities. In geotechnical applications, slope stability models play an important role in predicting slope behaviour as a result of external influences; however, they are only rarely incorporated into landslide early warning systems. In this study, the physically based slope stability model CHASM (Combined Hydrology and Stability Model) was initially applied to a reactivated landslide in the Swabian Alb to assess stability conditions and was subsequently integrated into a prototype of a semi-automated landslide early warning system. The results of the CHASM application demonstrate that for several potential shear surfaces the Factor of Safety is relatively low, and subsequent rainfall events could cause instability. To integrate and automate CHASM within an early warning system, international geospatial standards were employed to ensure the interoperability of system components and the transferability of the implemented system as a whole. The CHASM algorithm is automatically run as a web processing service, utilising fixed, predetermined input data, and variable input data including hydrological monitoring data and quantitative rainfall forecasts. Once pre-defined modelling or monitoring thresholds are exceeded, a web notification service distributes SMS and email messages to relevant experts, who then determine whether to issue an early warning to local and regional stakeholders, as well as providing appropriate action advice. This study successfully demonstrated the potential of this new approach to landslide early warning. To move from demonstration to active issuance of early warnings demands the future acquisition of high-quality data on mechanical properties and distributed pore water pressure regimes.
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页码:859 / 875
页数:16
相关论文
共 81 条
[1]  
Anderson M(2008)Implementing low-cost landslide risk reduction: a pilot study in unplanned housing areas of the Caribbean Nat Hazard 47 297-315
[2]  
Holcombe L(2009)A debris-flow alarm system for the Alpine Illgraben catchment: design and performance Nat Hazard 49 517-539
[3]  
Flory R(1955)The use of the slip circle in the stability analysis of slopes Geotechnique 5 7-17
[4]  
Renaud J-P(1960)Das Alter des Albtraufs Jahreshefte des Vereins für Vaterländische Naturkunde in Württemberg 115 39-92
[5]  
Badoux A(2010)Application of the MoniFLaIR early warning system for rainfall-induced landslides in Piedmont region (Italy) Landslides 4 401-410
[6]  
Graf C(2008)Predicting landslides for risk analysis—spatial models tested by a cross-validation technique Geomorphology 94 438-452
[7]  
Rhyner J(1996)Using a combined slope hydrology/stability model to identify suitable conditions for landslide prevention by vegetation in the humid tropics Earth Surf Process Landforms 21 737-747
[8]  
Kuntner R(2011)Integrating physical and empirical landslide susceptibility models using generalized additive models Geomorphology 129 376-386
[9]  
McArdell BW(2005)Probabilistic landslide hazard assessment at the basin scale Geomorphology 72 272-299
[10]  
Bishop AW(2010)Learning from slope failures to enhance landslide risk management Q J Eng Geol Hydrogeol 43 33-68