Landslide prediction, monitoring and early warning: a concise review of state-of-the-art

Landslide is one of the repeated geological hazards during rainy season, which causes fatalities, damage to property and economic losses in Korea. Landslides are responsible for at least 17% of all fatalities from natural hazards worldwide, and nearly 25% of annual casualties caused by natural hazar...

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Published inGeosciences journal (Seoul, Korea) Vol. 21; no. 6; pp. 1033 - 1070
Main Authors Chae, Byung-Gon, Park, Hyuck-Jin, Catani, Filippo, Simoni, Alessandro, Berti, Matteo
Format Journal Article
LanguageEnglish
Published Seoul The Geological Society of Korea 01.12.2017
한국지질과학협의회
Subjects
Online AccessGet full text
ISSN1226-4806
1598-7477
DOI10.1007/s12303-017-0034-4

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Abstract Landslide is one of the repeated geological hazards during rainy season, which causes fatalities, damage to property and economic losses in Korea. Landslides are responsible for at least 17% of all fatalities from natural hazards worldwide, and nearly 25% of annual casualties caused by natural hazards in Korea. Due to global climate change, the frequency of landslide occurrence has been increased and subsequently, the losses and damages associated with landslides also have been increased. Therefore, accurate prediction of landslide occurrence, and monitoring and early warning for ground movements are very important tasks to reduce the damages and losses caused by landslides. Various studies on landslide prediction and reduction in landslide damage have been performed and consequently, much of the recent progress has been in these areas. In particular, the application of information and geospatial technologies such as remote sensing and geographic information systems (GIS) has greatly contributed to landslide hazard assessment studies over recent years. In this paper, the recent advances and the state-of-the-art in the essential components of the landslide hazard assessment, such as landslide susceptibility analysis, runout modeling, landslide monitoring and early warning, were reviewed. Especially, this paper focused on the evaluation of the landslide susceptibility using probabilistic approach and physically based method, runout evaluation using volume based model and dynamic model, in situ ground based monitoring techniques, remote sensing techniques for landslide monitoring, and landslide early warning using rainfall and physical thresholds.
AbstractList Landslide is one of the repeated geological hazards during rainy season, which causes fatalities, damage to property and economic losses in Korea. Landslides are responsible for at least 17% of all fatalities from natural hazards worldwide, and nearly 25% of annual casualties caused by natural hazards in Korea. Due to global climate change, the frequency of landslide occurrence has been increased and subsequently, the losses and damages associated with landslides also have been increased. Therefore, accurate prediction of landslide occurrence, and monitoring and early warning for ground movements are very important tasks to reduce the damages and losses caused by landslides. Various studies on landslide prediction and reduction in landslide damage have been performed and consequently, much of the recent progress has been in these areas. In particular, the application of information and geospatial technologies such as remote sensing and geographic information systems (GIS) has greatly contributed to landslide hazard assessment studies over recent years. In this paper, the recent advances and the state-of-the-art in the essential components of the landslide hazard assessment, such as landslide susceptibility analysis, runout modeling, landslide monitoring and early warning, were reviewed. Especially, this paper focused on the evaluation of the landslide susceptibility using probabilistic approach and physically based method, runout evaluation using volume based model and dynamic model, in situ ground based monitoring techniques, remote sensing techniques for landslide monitoring, and landslide early warning using rainfall and physical thresholds. KCI Citation Count: 8
Landslide is one of the repeated geological hazards during rainy season, which causes fatalities, damage to property and economic losses in Korea. Landslides are responsible for at least 17% of all fatalities from natural hazards worldwide, and nearly 25% of annual casualties caused by natural hazards in Korea. Due to global climate change, the frequency of landslide occurrence has been increased and subsequently, the losses and damages associated with landslides also have been increased. Therefore, accurate prediction of landslide occurrence, and monitoring and early warning for ground movements are very important tasks to reduce the damages and losses caused by landslides. Various studies on landslide prediction and reduction in landslide damage have been performed and consequently, much of the recent progress has been in these areas. In particular, the application of information and geospatial technologies such as remote sensing and geographic information systems (GIS) has greatly contributed to landslide hazard assessment studies over recent years. In this paper, the recent advances and the state-of-the-art in the essential components of the landslide hazard assessment, such as landslide susceptibility analysis, runout modeling, landslide monitoring and early warning, were reviewed. Especially, this paper focused on the evaluation of the landslide susceptibility using probabilistic approach and physically based method, runout evaluation using volume based model and dynamic model, in situ ground based monitoring techniques, remote sensing techniques for landslide monitoring, and landslide early warning using rainfall and physical thresholds.
Author Park, Hyuck-Jin
Chae, Byung-Gon
Catani, Filippo
Berti, Matteo
Simoni, Alessandro
Author_xml – sequence: 1
  givenname: Byung-Gon
  surname: Chae
  fullname: Chae, Byung-Gon
  organization: Planning and Coordination Division, Korea Institute of Geoscience and Mineral Resources
– sequence: 2
  givenname: Hyuck-Jin
  surname: Park
  fullname: Park, Hyuck-Jin
  email: hjpark@sejong.ac.kr
  organization: Department of Geoinformation Engineering, Sejong University
– sequence: 3
  givenname: Filippo
  surname: Catani
  fullname: Catani, Filippo
  organization: Department of Earth Sciences, University of Florence
– sequence: 4
  givenname: Alessandro
  surname: Simoni
  fullname: Simoni, Alessandro
  organization: Department of Biological, Geological and Environmental Sciences, University of Bologna
– sequence: 5
  givenname: Matteo
  surname: Berti
  fullname: Berti, Matteo
  organization: Department of Biological, Geological and Environmental Sciences, University of Bologna
BackLink https://www.kci.go.kr/kciportal/ci/sereArticleSearch/ciSereArtiView.kci?sereArticleSearchBean.artiId=ART002288271$$DAccess content in National Research Foundation of Korea (NRF)
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Keywords landslide monitoring
landslide susceptibility
early warning
runout
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Snippet Landslide is one of the repeated geological hazards during rainy season, which causes fatalities, damage to property and economic losses in Korea. Landslides...
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SubjectTerms Earth and Environmental Science
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Title Landslide prediction, monitoring and early warning: a concise review of state-of-the-art
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