A New Method for Assessing Deep Catastrophic Landslide Susceptibility

Author:

UCHIDA Taro1,YOKOYAMA Osamu2,SUZUKI Ryuji3,TAMURA Keiji4,ISHIZUKA Tadanori2

Affiliation:

1. Erosion and Sediment Control Division, National Institute for Land and Infrastructure Management

2. Volcano and Debris Flow Research Team, Public Works Research Institute

3. Disaster Prevention and Mitigation Engineering Office

4. Unzen Restoration Work Office

Publisher

Japan Society of Erosion Control Engineering

Reference43 articles.

1. Agliardi, F., Crosta, G.B., Zanchi, A., and Ravazzi, C. (2009): Onset and timing of deep-seated gravitational slope deformations in the eastern Alps, Italy, Geomorphology, Vol. 103, pp. 113-129.

2. Brückl, E., and Parotidis, M. (2005): Prediction of slope instabilities due to deep-seated gravitational creep, Nat. Hazards Earth Syst. Sci., Vol. 5, pp. 155-172.

3. Chigira, M. (1992): Long-term gravitational deformation of rock by mass rock creep, Eng. Geol., Vol. 32, pp. 157-184.

4. Chigira, M. (2006): Prediction of potential landslide site from the viewpoint of geology and geomorphology, Journal of Geotechnical Engineering, Vol. 62, No. 4, pp. 722-735.

5. Chigira, M. (2009): September 2005 rain-induced catastrophic rockslides on slopes affected by deep-seated gravitational deformations, Kyushu, southern Japan, Eng. Geol., Vol. 108, pp. 1-15.

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