4.1 Article

Co-seismic landslide topographic analysis based on multi-temporal DEM-A case study of the Wenchuan earthquake

Journal

SPRINGERPLUS
Volume 2, Issue -, Pages -

Publisher

SPRINGER INTERNATIONAL PUBLISHING AG
DOI: 10.1186/2193-1801-2-544

Keywords

Co-seismic landslide; Topographic; PGA; Multi-temporal DEM; Wenchuan earthquake

Funding

  1. National Nonprofit Fundamental Research Grant of China [IGCEA1119]
  2. Foundation of Returned Overseas Scholars of China
  3. National Natural Science Foundation of China [41102136]

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Hillslope instability has been thought to be one of the most important factors for landslide susceptibility. In this study, we apply geomorphic analysis using multi-temporal DEM data and shake intensity analysis to evaluate the topographic characteristics of the landslide areas. There are many geomorphologic analysis methods such as roughness, slope aspect, which are also as useful as slope analysis. The analyses indicate that most of the co-seismic landslides occurred in regions with roughness, hillslope and slope aspect of >1.2, >30, and between 90 and 270, respectively. However, the intersection regions from the above three methods are more accurate than that derived by applying single topographic analysis method. The ground motion data indicates that the co-seismic landslides mainly occurred on the hanging wall side of Longmen Shan Thrust Belt within the up-down and horizontal peak ground acceleration (PGA) contour of 150 PGA and 200 gal, respectively. The comparisons of pre- and post-earthquake DEM data indicate that the medium roughness and slope increased, the roughest and steepest regions decreased after the Wenchuan earthquake. However, slope aspects did not even change. Our results indicate that co-seismic landslides mainly occurred at specific regions of high roughness, southward and steep sloping areas under strong ground motion. Co-seismic landslides significantly modified the local topography, especially the hillslope and roughness. The roughest relief and steepest slope are significantly smoothed; however, the medium relief and slope become rougher and steeper, respectively.

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