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Time series assessment on landslide occurrences in an area undergoing development

Bibliographic Data

ID20153311
AuthorsNorbert Simon (0009-0005-3339-9286, School of Environment and Natural Resources Sciences Universiti Kebangsaan Malaysia Selangor Malaysia, corresponding author), Michael Crozier (School of Geography Environment and Earth Sciences Victoria University of Wellington New Zealand), Mairéad de Róiste (0000-0002-7418-1428, School of Geography Environment and Earth Sciences Victoria University of Wellington New Zealand), Abdul Ghani Rafek (School of Environment and Natural Resources Sciences Universiti Kebangsaan Malaysia Selangor Malaysia), Rodeano Roslee (0000-0002-4501-7477, School of Science & Technology Universiti Malaysia Sabah Kota Kinabalu Sabah Malaysia)
Year2015
Volume36
Issue1
Pages98-111
Publication date2015-03-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueSingapore Journal of Tropical Geography (JOURNAL)
Journal identifiersISSN: 0129-7619 • E-ISSN: 1467-9493
PublisherWiley (PUBLISHER • GB)
DOI10.1111/sjtg.12096
OpenAlexW1582288029
LanguageEN
References cited9

This study assesses the influence of development on landslide occurrences in a rapidly developing area, K ota K inabalu in S abah M alaysia, across three assessment years (1978, 1994 and 2010). Two development indicators, land use and road density, were used to measure the influence of development on landslide occurrence. Land use was classified into four categories ( barren , forest , developed and other ), and road density was classified into low ( 2 ), moderate (50–150 m/40 000 m 2 ) and high (> 150 m/40 000 m 2 ). Landslide density analysis was used to calculate the concentration of landslide for the different land use and road density categories. The number of landslides in developed areas increased from 19 landslides/100 km 2 in 1978, to 29 landslides/100 km 2 in 1994 and to 50 landslides/100 km 2 in 2010, mirroring an increase in land use for development purposes from 8 per cent in 1978 to 27 per cent in 2010. Landslide density also gradually increased in the high road density class from 10 landslides/100 km 2 in 1978, to 30 landslides/100 km 2 in 1994 and 62 landslides/100 km 2 in 2010. These results show that road construction activities influence landslide occurrences

Civil engineering · Geography · Geomorphology · Land use · Landslide · Physical geography · Fire effects on ecosystems · Flood Risk Assessment and Management · Geology · Landslides and related hazards

  • The socioeconomic effects of a landslide in Western Washington

    Tara J Burke, David N Sattler et al.•Environmental Hazards•2002

Citation velocityhistorical
Highly citedNo

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