4.5 Article

Distribution and Susceptibility Assessment of Collapses and Landslides in the Riparian Zone of the Xiaowan Reservoir

Journal

CHINESE GEOGRAPHICAL SCIENCE
Volume 29, Issue 1, Pages 70-85

Publisher

SPRINGER
DOI: 10.1007/s11769-018-1012-0

Keywords

susceptibility assessment; collapses and landslides; water level fluctuations; Xiaowan Reservoir; Lancang-Mekong River

Funding

  1. National Natural Science Foundation of China [41601296]
  2. National Key R&D Program of China [2016YFA0601601]
  3. China Postdoctoral Science Foundation [2016M592720]
  4. Yunnan Applied Basic Research Projects [2016FD11]

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The southwest alpine gorge region is the major state base of hydropower energy development in China and hence planned many cascading hydropower stations. After the reservoir impoundment, the intense water level fluctuations under the interaction of cascade dams operating and the mountainous flooding, usually cause bank collapse, landslide and debris flow hazards. The Xiaowan reservoir (XWR), for example, as the dragon head' meg reservoir located in the middle mainstream of Lancang River, have resulted in a series of geohazards during its building and operating. In this study, we investigated the number and surface area of collapses and landslides (CLs) occurred in the water level fluctuations zone (WLFZ) of XWR using remote sensing images of Gaofen-1 and Google Earth; evaluated the CLs susceptibility using information value method. The results presented that the total WLFZ area of 87.03 km(2) and 804 CLs masses with a total area of 1.98 km(2) were identified in the riparian zone of XWR. CLs mainly occurred at an elevation of 1190-1240 m, and the CLs density increased with an increase in altitude. The WLFZ with a slope gradient of 25 degrees-45 degrees is the main CLs distribution area that accounts for more than half of the total CLs area. The susceptibility assessment revealed that high and very high susceptibility zones are generally distributed along zones with an elevation of 1210-1240 m, a slope degree of 25 degrees-45 degrees and a slope aspect perpendicular to the direction of Lancang River. Furthermore, these susceptible zones are close in distance to the dam site and tend to be in the riparian zones with the formation lithology of Silurian strata. These results provide a valuable contribution to prevent and control geohazards in the XWR area. Moreover, this study offers a constructive sample of geohazards assessment in the riparian zone of large reservoirs throughout the mountains of southwest China.

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