The 102 Landslide: human–slope interaction in SE Tibet over a 20-year period

Author:

Shang Yanjun,Hyun Chang-Uk,Park Hyeong-Dong,Yang Zhifa,Yuan Guangxiang

Funder

Chinese Natural Science Foundation Committee

Brain Korea 21 Plus Project

Research Institute of Energy and Resources

Publisher

Springer Science and Business Media LLC

Subject

Earth-Surface Processes,Geology,Pollution,Soil Science,Water Science and Technology,Environmental Chemistry,Global and Planetary Change

Reference23 articles.

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2. Evans SG, Mugnozza GS, Strom AL, Hermanns RL, Ischuk A, Vinnichenko S (2006) Landslides from massive rock slope failure and associated phenomena. In: Landslides from massive rock slope failure, part 1, vol 49. NATO science series: IV—earth and environmental sciences, pp 3–52

3. IMHE and ITS (1999) A study of typical mountain hazards along Sichuan-Tibet Highway. IMHE (Institute of Mountain Hazards and Environment, the Chinese Academy of Sciences and Water Conservancy Ministry of China) and ITS (Institute of the Traffic Science, the Traffic Department of the Tibet Autonomous Region). Chengdu Science and Technology University Publishing House, Chengdu, pp 158–184 (in Chinese with English preface)

4. Iturrizaga L (1999) Typical debris accumulation forms and formations in High Asia—a glacial-history-based concept of the origin of Postglacial debris accumulation landscapes in subtropical high mountains with selected examples from the Hindu Kush, the Karakoram and the Himalayas. GeoJournal 47(1–2):277–339

5. Iturrizaga L (2001) Lateroglacial valleys and landforms in the Karakoram Mountains (Pakistan). GeoJournal 54(2–4):397–428

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