Physically based modeling of rainfall-triggered landslides: a case study in the Luquillo forest, Puerto Rico
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Published:2013-09-03
Issue:9
Volume:17
Page:3371-3387
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ISSN:1607-7938
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Container-title:Hydrology and Earth System Sciences
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language:en
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Short-container-title:Hydrol. Earth Syst. Sci.
Author:
Lepore C., Arnone E.ORCID, Noto L. V.ORCID, Sivandran G., Bras R. L.
Abstract
Abstract. This paper presents the development of a rainfall-triggered landslide module within an existing physically based spatially distributed ecohydrologic model. The model, tRIBS-VEGGIE (Triangulated Irregular Networks-based Real-time Integrated Basin Simulator and Vegetation Generator for Interactive Evolution), is capable of a sophisticated description of many hydrological processes; in particular, the soil moisture dynamics are resolved at a temporal and spatial resolution required to examine the triggering mechanisms of rainfall-induced landslides. The validity of the tRIBS-VEGGIE model to a tropical environment is shown with an evaluation of its performance against direct observations made within the study area of Luquillo Forest. The newly developed landslide module builds upon the previous version of the tRIBS landslide component. This new module utilizes a numerical solution to the Richards' equation (present in tRIBS-VEGGIE but not in tRIBS), which better represents the time evolution of soil moisture transport through the soil column. Moreover, the new landslide module utilizes an extended formulation of the factor of safety (FS) to correctly quantify the role of matric suction in slope stability and to account for unsaturated conditions in the evaluation of FS. The new modeling framework couples the capabilities of the detailed hydrologic model to describe soil moisture dynamics with the infinite slope model, creating a powerful tool for the assessment of rainfall-triggered landslide risk.
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Reference76 articles.
1. Arnone, E.: An Integrated System for the Analysis of Rainfall-Triggered Landslides, Universita' degli Studi di Palermo, Palermo, 2011. 2. Arnone, E., Noto, L. V., Lepore, C., and Bras, R. L.: Physically-based and distributed approach to analyze rainfall-triggered landslides at watershed scale, Geomorphology, 133, 121–131, 2011. 3. Bao, C. G., Gong, B. W., and Zhan, L. T.: Properties of unsaturated soils and slope stability of expansive soils, Proceedings of the Second International Conference on Unsaturated Soils – UNSAT98, Beijing, China, 71–98, 1998. 4. Basnet, K., Scatena, F. N., Likens, G. E., and Lugo, A. E.: Ecological consequences of root frapthing in tabonuco (Dacryodes excelsa) trees in the Luquillo Experimental Forest, Puerto Rico, Biotropica, 25, 28–35, 1993. 5. Baum, R. L., Savage, W. Z., and Godt, J. W.: TRIGR-a Fortran program for transient rainfall infiltration and grid-based regional slope-stability analysis, US Geological Survey Open File Report 2008-1159, 75 pp., 2008.
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