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Journal = Engineering Geology
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WSL Authors ≠ Chen, Zheng
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A new method for detailed discharge and volume measurements of debris flows based on high-frequency 3D LiDAR point clouds; Illgraben, Switzerland
Spielmann, R., & Aaron, J. (2024). A new method for detailed discharge and volume measurements of debris flows based on high-frequency 3D LiDAR point clouds; Illgraben, Switzerland.
Engineering Geology
,
329
, 107386 (16 pp.). https://doi.org/10.1016/j.enggeo.2023.107386
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Published Version
Supplemental Material
Evaluation of approaches to calculate debris-flow parameters for hazard assessment
Hürlimann, M., Rickenmann, D., Medina, V., & Bateman, A. (2008). Evaluation of approaches to calculate debris-flow parameters for hazard assessment.
Engineering Geology
,
102
(3-4), 152-163. https://doi.org/10.1016/j.enggeo.2008.03.012
Detailed Record
Published Version
Geomorphometric characteristic of New Zealand landslide dams
Korup, O. (2004). Geomorphometric characteristic of New Zealand landslide dams.
Engineering Geology
,
73
(1-2), 13-35. https://doi.org/10.1016/j.enggeo.2003.11.003
Detailed Record
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Characterisation of a volcanic residual soil and its implications for large landslide phenomena: application to Tenerife, Canary Islands
Hürlimann, M., Ledesma, A., & Martí, J. (2001). Characterisation of a volcanic residual soil and its implications for large landslide phenomena: application to Tenerife, Canary Islands.
Engineering Geology
,
59
(1-2), 115-132. https://doi.org/10.1016/S0013-7952(00)00069-7
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