Document of bibliographic reference 120501

BibliographicReference record

Type
Bibliographic resource
Type of document
Book chapters
Type of document
Summary
BibLvlCode
AMS
Title
Assessing the storm vulnerability of the Belgian coastline
Abstract
Climate change is likely to induce increased sea level and storm frequency. As such, assessing the strength of the Belgian coastal defence infrastructure against natural hazards is of primordial importance to reduce inundation consequences to properties and nature. This study presents an integrated methodology to estimate damage risks from a hypothetical storm with a surge level of +8m TAW and a duration of 45 hours along the entire coastline. After translation of deep water hydrometeorological conditions to the nearshore, several failure modes of the defence infrastructure are modelled: beach and dune erasion, collapse of dikes due to wave impact and overtopping, and subsequent breach forming and flooding of the low-lying coastal plain. Attention was paid to the various model uncertainties. Damage of infrastructure, properties and human casualties are calculated using a raster-based GIS model. Multiplication of the results with a rate factor based on prognoses of the evolution of socio-economic parameters allows projection of the results to 2050. All this, in combination with a social cost benefit analysis, will provide a tool for supporting coastal zone management in Belgium in a quantitative way.
Bibliographic citation
Reyns, J.; Vanpoucke, Ph.; Verwaest, T.; Van der Biest, K.; Vanderkimpen, P.; Peeters, P.; Vanneuville, W. (2008). Assessing the storm vulnerability of the Belgian coastline, in: Mees, J. et al. (Ed.) VLIZ Young Scientists' Day, Brugge, Belgium, 29 February 2008: book of abstracts. VLIZ Special Publication, 40: pp. 63
Topic
Marine
Access rights
open access
Is accessible for free
true

Authors

author
Name
Johan Reyns
author
Name
Philippe Vanpoucke
author
Name
Toon Verwaest
Identifier
https://orcid.org/0000-0002-3911-6962
author
Name
Katrien Van der Biest
author
Name
Paul Vanderkimpen
Identifier
https://orcid.org/0009-0009-2577-9480
author
Name
Patrik Peeters
Identifier
https://orcid.org/0009-0007-8580-2764
author
Name
Wouter Vanneuville
Identifier
https://orcid.org/0000-0001-8727-9275

thesaurus terms

term
Analysis (term code: 359 - defined in term set: ASFA Thesaurus List)
Beach erosion (term code: 821 - defined in term set: ASFA Thesaurus List)
Climatic changes (term code: 1591 - defined in term set: ASFA Thesaurus List)
Coastlines (term code: 1657 - defined in term set: ASFA Thesaurus List)
Damage (term code: 2077 - defined in term set: ASFA Thesaurus List)
Dunes (term code: 2533 - defined in term set: ASFA Thesaurus List)
Erosion (term code: 2874 - defined in term set: ASFA Thesaurus List)
Flooding (term code: 3330 - defined in term set: ASFA Thesaurus List)
GIS (term code: 9519 - defined in term set: ASFA Thesaurus List)
Methodology (term code: 5176 - defined in term set: ASFA Thesaurus List)
Modelling (term code: 5269 - defined in term set: ASFA Thesaurus List)
Overtopping (term code: 5902 - defined in term set: ASFA Thesaurus List)
Risks (term code: 7004 - defined in term set: ASFA Thesaurus List)
Sea level changes (term code: 7263 - defined in term set: ASFA Thesaurus List)
Storm surges (term code: 9693 - defined in term set: ASFA Thesaurus List)
Wave forces (term code: 9195 - defined in term set: ASFA Thesaurus List)

geographic terms

geographic terms associated with this publication
Belgian Coast

Document metadata

date created
2008-03-06
date modified
2019-08-30