In this AoE project, a world-leading Centre for Slope Safety will be established to provide innovative and environmentally friendly solutions for coping with future rainfall scenarios. The centre draws on HK’s intellectual assets and brings together experts with the right credentials and institutions with a proven track record of success in meteorology, mathematics, geotechnical engineering, computer science & engineering, biological science, environmental science (specifically water and soil conservation), social science (specifically psychology), information science (for space and earth) and engineering education.
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1 to 10 of 13 Results
Dec 1, 2025
NG, Charles Wang Wai; ZUO, Youming; POUDYAL, Sunil; JIA, Zhenyang; ZHANG, Shuai, 2025, "Investigation of Dynamic Fragmentation in Bidisperse Flow Impact Against a Rigid Barrier", https://doi.org/10.14711/dataset/42XVD1, DataSpace@HKUST, V1, UNF:6:3BzjallhZLYdmNZfMjgYvA== [fileUNF]
Dataset for the article "Investigation of Dynamic Fragmentation in Bidisperse Flow Impact Against a Rigid Barrier"
Tabular Data - 804.2 KB - 103 Variables, 2243 Observations - UNF:6:3BzjallhZLYdmNZfMjgYvA==
This dataset contains the experimental results from "Investigation of Dynamic Fragmentation in Bidisperse Flow Impact Against a Rigid Barrier "
Oct 28, 2025
NG, Charles Wang Wai; POUDYAL, Sunil; CUI, Peng; LIU, Haiming; LI, Zhi; ZHENG, Min; JIA, Zhenyang; BHATTA, Aastha; DE SILVA, Weerakonda Arachchige Roanga Kasuni; ZHOU, Gordon Gong Dan; PETRINI, Claudio; DENK, Matthias; SONG, Dongri, 2025, "A 190-m-long flume for investigation of debris flow impacts on multiple flexible barriers", https://doi.org/10.14711/dataset/WMVMNZ, DataSpace@HKUST, V1, UNF:6:7e/nP8y1om/cM/sSGkmudQ== [fileUNF]
Dataset for the journal article "A 190-m-long flume for investigation of debris flow impacts on multiple flexible barriers" including the supplementary information, test data and videos of debris flow impact kinematics.
MPEG-4 Video - 38.0 MB - MD5: 61bd2237f04601e5ddee723b5c9490c1
Side view video showing detailed kinematics at the first barrier FB1 captured by DJI1 action camera during the test conducted on 04 Nov. 2024
Tabular Data - 11.8 KB - 13 Variables, 106 Observations - UNF:6:7e/nP8y1om/cM/sSGkmudQ==
Spreadsheet file with test data corresponding to all the figures used in the main manuscript and supplementary information.
MS Word - 9.2 MB - MD5: 5971c91d67dc0de263b74cb2ad5a9321
Supplementary information describing the kinematics of debris flow impact at the 2nd, 3rd and 4th barriers; comparison of measured flow heights by multiple laser sensors at respective barrier locations; and method used in evaluating flow velocity from video footage
MPEG-4 Video - 53.6 MB - MD5: 6c73b4f859ea146ccae0684ff2ba1bc6
Top view video from UAV capturing the overall flume during the test conducted on 04 Nov. 2024
Nov 25, 2024
POUDYAL, Sunil, 2024, "LSDYNA keyword input file for Mechanisms and Design of Debris Flow Impact on Multiple Flexible Barriers", https://doi.org/10.14711/dataset/CE4NC8, DataSpace@HKUST, V1
A LS-DYNA keyword input file used for the numerical back-analysis of test D2Br2 .
Unknown - 74.5 MB - MD5: 0ea55fde8ec1d888059640fe28e300a2
LS-DYNA R-11 keyword input file
May 20, 2022
ZHENG, Min, 2022, "Effects of hydrophobicity of erodible bed on debris flow entrainment and momentum growth", https://doi.org/10.14711/dataset/FAS1XG, DataSpace@HKUST, V1
This dataset contains the experimental results from "Effects of hydrophobicity of erodible bed on debris flow entrainment and momentum growth"
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