Landslide susceptibility and hazard assessment in San Ramón ravine, Santiago de Chile, from an engineering geological approach
Keywords: flows, chile, flow, susceptibility, soils, safety, santiago, bursts, areas, failure, planning, block, area, evaluation, data, slope, debris, urban, risks, hazards, expansion, rock, assessment, landslides, geology, regional, hazard, shallow, landslide, engineering, de, central, Geological, Geotechnical, territorial, limited, Metropolitana, [Metropolitana], slides, Rockfalls
Abstract
Debris flows and soil and rock slides are among the main geological hazards in the mountain foothills of Central Chile. Geological risk associated with the development of landslides, especially debris flows triggered in the basins of ravines that drain into the capital city, Santiago, has increased in time due to accelerated urban expansion. A landslide hazard evaluation in the San Ramón Ravine, located within the foothills of Santiago is presented. Hazard evaluation is based on a methodology that combines the determination of landslide susceptibility calculated by integration of conditioning factors, with the assessment of slope failure and runout probabilities incorporating geotechnical engineering approaches. The methodology is appropriate for medium or subregional scale studies with limited data. The results show that in San Ramón Ravine the landslide hazard consists mainly of debris flows, rock block slides, rock falls and shallow soil slides. Among these, debris flows are the most important due to the urban area that can be affected. Other case studies show that the method can be used in other regions with minor adaptations for territorial planning or for engineering and environmental purposes. © 2009 Springer-Verlag.
Más información
Título de la Revista: | ENVIRONMENTAL EARTH SCIENCES |
Volumen: | 60 |
Número: | 6 |
Editorial: | Springer |
Fecha de publicación: | 2010 |
Página de inicio: | 1227 |
Página final: | 1243 |
URL: | http://www.scopus.com/inward/record.url?eid=2-s2.0-77954047070&partnerID=q2rCbXpz |