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Characteristics of landslide in Koshi River Basin,Central Himalaya 被引量:5

Characteristics of landslide in Koshi River Basin, Central Himalaya
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摘要 Koshi River basin, which lies in the Central Himalayas with an area of 71,500 km2, is an important trans-boundary river basin shared by China, Nepal and India. Yet, landslide-prone areas are all located in China and Nepal, imposing alarming risks of widespread damages to property and loss of human life in both countries. Against this backdrop, this research, by utilizing remote sensing images and topographic maps, has identified a total number of 6877 landslides for the past 23 years and further examined their distribution, characteristics and causes. Analysis shows that the two-step topography in the Himalayan region has a considerable effect on the distribution of landslides in this area. Dense distribution of landslides falls into two regions: the Lesser Himalaya(mostly small and medium size landslides in east-west direction) and the TransitionBelt(mostly large and medium size landslides along the river in north-south direction). Landslides decrease against the elevation while the southern slopes of the Himalayas have more landslides than its northern side. Change analysis was carried out by comparing landslide distribution data of 1992, 2010 and 2015 in the Koshi River basin. The rainfallinduced landslides, usually small and shallow and occurring more frequently in regions with an elevation lower than 1000 m, are common in the south and south-east slopes due to heavy precipitation in the region, and are more prone to the slope gradient of 20°~30°. Most of them are distributed in Proterozoic stratum(Pt3ε, Pt3 and Pt2-3) and Quaternary stratum. While for earthquake-induced landslides, they are more prone to higher elevations(2000~3000 m) and steeper slopes(40°~50°). Koshi River basin, which lies in the Central Himalayas with an area of 71,500 km2, is an important trans-boundary river basin shared by China, Nepal and India. Yet, landslide-prone areas are all located in China and Nepal, imposing alarming risks of widespread damages to property and loss of human life in both countries. Against this backdrop, this research, by utilizing remote sensing images and topographic maps, has identified a total number of 6877 landslides for the past 23 years and further examined their distribution, characteristics and causes. Analysis shows that the two-step topography in the Himalayan region has a considerable effect on the distribution of landslides in this area. Dense distribution of landslides falls into two regions: the Lesser Himalaya(mostly small and medium size landslides in east-west direction) and the TransitionBelt(mostly large and medium size landslides along the river in north-south direction). Landslides decrease against the elevation while the southern slopes of the Himalayas have more landslides than its northern side. Change analysis was carried out by comparing landslide distribution data of 1992, 2010 and 2015 in the Koshi River basin. The rainfallinduced landslides, usually small and shallow and occurring more frequently in regions with an elevation lower than 1000 m, are common in the south and south-east slopes due to heavy precipitation in the region, and are more prone to the slope gradient of 20°-30°. Most of them are distributed in Proterozoic stratum(Pt3ε, Pt3 and Pt2-3) and Quaternary stratum. While for earthquake-induced landslides, they are more prone to higher elevations(2000-3000 m) and steeper slopes(40°-50°).
出处 《Journal of Mountain Science》 SCIE CSCD 2016年第10期1711-1722,共12页 山地科学学报(英文)
基金 supported by the National Natural Science Foundation of China(Grant No.41401007) the Key Research Program of the Chinese Academy of Sciences(Grant No.KZZD-EW-08-01) jointly supported by the Australian government funded Koshi Basin Programme at ICIMOD ICIMOD’s core funds contributed by the governments of Afghanistan,Australia,Austria,Bangladesh,Bhutan,China,India,Myanmar,Nepal,Norway,Pakistan,Switzerland,and theUnited Kingdom
关键词 LANDSLIDE Koshi River Basin Central Himalayas April 2015 Nepal earthquake Landslide Koshi River Basin Central Himalayas April 2015 Nepal earthquake
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参考文献26

  • 1Bookhagen B, Burbank DW (2010) Toward a complete Himalayan hydrological budget: Spatiotemporal distribution of snowmelt and rainfall and their impact on river discharge. Journal of Geophysical Research 115(F3).
  • 2Chakraborty D, Anbalagan R (2013) Landslide hazard analysis and management: A case study from Nainital, India. Earth System Processes and Disaster Management, Society of Earth Scientists Series 1.
  • 3Chen N, Hu G, Deng W, et al. (2013) On the water hazards in the trans-boundary Koshi river basin. Natural Hazards and Earth System Sciencs 13: 795-808.
  • 4Chengdu geological survey center of China Geological Survey (2007) Geological Map of Qinghai Tibet Plateau and Its Adjacent Area. Geological Publishing House, Beijing, China.
  • 5Cui P, He S, Wang Z, et al. (2011) Formation mechanism and risk control to mountain hazards induced by Wenchuan earthquake. Science Press, Beijing, China.
  • 6Dahal RK, Hasegawa S (2008) Representative rainfall thresholds for landslides in Nepal Himalaya. Geomorphology loo: 429-443.
  • 7Dahal RK, Hasegawa S, Yamanaka M, et al. (2006) Rainfall triggered flow-like landslides: understanding from southern hills of Kathmandu, Nepal and northern Shikoku, Japan. Proe loth Int Congr of IAEG, The Geological Society of London, IAEG2006 Paper number 819, 1-14.
  • 8Dahal RK, Hasegawa S, Nonomura A, et al. (2008) Predictive modeling of rainfall-induced landslide hazard in the Lesser Himalaya of Nepal based on weights-of-evidence. Geomorphology lO2: 496-51o.
  • 9Dahal RK, Hasegawa S, Nonomura A, et al. (2008) Predictive modeling of rainfall-induced landslide hazard in the Lesser Himalaya of Nepal based on weights-of-evidence. Geomorphology lo2: 496-51o.
  • 10Dahal RK, Hasegawa S, Yamanaka M, et al. (2009) Comparative analysis of contributing parameters for rainfall-triggered landslides in the Lesser Himalaya of Nepal. Environmental Geology 58: 567-586.

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