GIS-based landslide susceptibility mapping using bivariate statistical methods in North-western Tunisia

Author:

Anis Zorgati1,Wissem Gallala1,Vali Vakhshoori1,Smida Habib23,Mohamed Essghaier Gaied1

Affiliation:

1. Universite de Gabes Institut Superieur des Sciences et Techniques des Eaux Gabes Sousse, Sousse, Tunisia

2. Faculty of Earth Sciences, King Abdulaziz University, JeddahSaudi Arabia

3. Laboratory of Water Energy and Envirenment, University of Sfax Tunisia, JeddahSaudi Arabia

Abstract

AbstractThe Tunisian North-western region, especially Tabarka and Ain-Drahim villages, presents many landslides every year. Therefore, the landslide susceptibility mapping is essential to frame zones with high landslide susceptibility, to avoid loss of lives and properties. In this study, two bivariate statistical models: the evidential belief functions (EBF) and the weight of evidence (WoE), were used to produce landslide susceptibility maps for the study area. For this, a landslide inventory map was mapped using aerial photo, satellite image and extensive field survey. A total of 451 landslides were randomly separated into two datasets: 316 landslides (70%) for modelling and 135 landslides (30%) for validation. Then, 11 landslide conditioning factors: elevation, slope, aspect, lithology, rainfall, normalized difference vegetation index (NDVI), land cover/use, plan curvature, profile curvature, distance to faults and distance to drainage networks, were considered for modelling. The EBF and WoE models were well validated using the Area Under the Receiver Operating Characteristic (AUROC) curve with a success rate of 87.9% and 89.5%, respectively, and a predictive rate of 84.8% and 86.5%, respectively. The landslide susceptibility maps were very similar by the two models, but the WoE model is more efficient and it can be useful in future planning for the current study area.

Publisher

Walter de Gruyter GmbH

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

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