Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations

As over seventy percent of the land of Hong Kong is mountainous, rainfall-induced debris flows are not uncommon in Hong Kong. The objective of this study is to incorporate numerical simulations of debris flows with GIS to identify potential debris flow hazard areas. To illustrate this approach, the...

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Main Authors: K. T. Chau, K. H. Lo
Format: Article
Language:English
Published: Copernicus Publications 2004-01-01
Series:Natural Hazards and Earth System Sciences
Online Access:http://www.nat-hazards-earth-syst-sci.net/4/103/2004/nhess-4-103-2004.pdf
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spelling doaj-4630f48c88414661a3ccbc0299a8488a2020-11-24T22:41:39ZengCopernicus PublicationsNatural Hazards and Earth System Sciences1561-86331684-99812004-01-0141103116Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulationsK. T. ChauK. H. LoAs over seventy percent of the land of Hong Kong is mountainous, rainfall-induced debris flows are not uncommon in Hong Kong. The objective of this study is to incorporate numerical simulations of debris flows with GIS to identify potential debris flow hazard areas. To illustrate this approach, the proposed methodology is applied to Leung King Estate in Tuen Mun. A Digital Elevation Model (DEM) of the terrain and the potential debris-flow sources were generated by using GIS to provide the required terrain and flow source data for the numerical simulations. A theoretical model by Takahashi et al. (1992) improved by incorporating a new erosion initiation criterion was used for simulating the runout distances of debris flows. The well-documented 1990 Tsing Shan debris flow, which occurred not too far from Leung King Estate, was used to calibrate most of the flow parameters needed for computer simulations. Based on the simulation results, a potential hazard zone was identified and presented by using GIS. Our proposed hazard map was thus determined by flow dynamics and a deposition mechanism through computer simulations without using any so- called expert opinions, which are bounded to be subjective and biased.http://www.nat-hazards-earth-syst-sci.net/4/103/2004/nhess-4-103-2004.pdf
collection DOAJ
language English
format Article
sources DOAJ
author K. T. Chau
K. H. Lo
spellingShingle K. T. Chau
K. H. Lo
Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
Natural Hazards and Earth System Sciences
author_facet K. T. Chau
K. H. Lo
author_sort K. T. Chau
title Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
title_short Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
title_full Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
title_fullStr Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
title_full_unstemmed Hazard assessment of debris flows for Leung King Estateof Hong Kong by incorporating GIS with numericalsimulations
title_sort hazard assessment of debris flows for leung king estateof hong kong by incorporating gis with numericalsimulations
publisher Copernicus Publications
series Natural Hazards and Earth System Sciences
issn 1561-8633
1684-9981
publishDate 2004-01-01
description As over seventy percent of the land of Hong Kong is mountainous, rainfall-induced debris flows are not uncommon in Hong Kong. The objective of this study is to incorporate numerical simulations of debris flows with GIS to identify potential debris flow hazard areas. To illustrate this approach, the proposed methodology is applied to Leung King Estate in Tuen Mun. A Digital Elevation Model (DEM) of the terrain and the potential debris-flow sources were generated by using GIS to provide the required terrain and flow source data for the numerical simulations. A theoretical model by Takahashi et al. (1992) improved by incorporating a new erosion initiation criterion was used for simulating the runout distances of debris flows. The well-documented 1990 Tsing Shan debris flow, which occurred not too far from Leung King Estate, was used to calibrate most of the flow parameters needed for computer simulations. Based on the simulation results, a potential hazard zone was identified and presented by using GIS. Our proposed hazard map was thus determined by flow dynamics and a deposition mechanism through computer simulations without using any so- called expert opinions, which are bounded to be subjective and biased.
url http://www.nat-hazards-earth-syst-sci.net/4/103/2004/nhess-4-103-2004.pdf
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AT khlo hazardassessmentofdebrisflowsforleungkingestateofhongkongbyincorporatinggiswithnumericalsimulations
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