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[journal article]

dc.contributor.authorBrandt, Sven Andersde
dc.contributor.authorLim, Nancy Joyde
dc.contributor.authorColding, Johande
dc.contributor.authorBarthel, Stephande
dc.date.accessioned2021-10-20T14:12:49Z
dc.date.available2021-10-20T14:12:49Z
dc.date.issued2021de
dc.identifier.issn2183-7635de
dc.identifier.urihttps://www.ssoar.info/ssoar/handle/document/75311
dc.description.abstractRiver flooding and urbanization are processes of different character that take place worldwide. As the latter tends to make the consequences of the former worse, together with the uncertainties related to future climate change and flood-risk modeling, there is a need to both use existing tools and develop new ones that help the management and planning of urban environments. In this article a prototype tool, based on estimated maximum land cover roughness variation, the slope of the ground, and the quality of the used digital elevation models, and that can produce flood ‘uncertainty zones’ of varying width around modeled flood boundaries, is presented. The concept of uncertainty, which urban planners often fail to consider in the spatial planning process, changes from something very difficult into an advantage in this way. Not only may these uncertainties be easier to understand by the urban planners, but the uncertainties may also function as a communication tool between the planners and other stakeholders. Because flood risk is something that urban planners always need to consider, these uncertainty zones can function both as buffer areas against floods, and as blue-green designs of significant importance for a variety of ecosystem services. As the Earth is warming and the world is urbanizing at rates and scales unprecedented in history, we believe that new tools for urban resilience planning are not only urgently needed, but also will have a positive impact on urban planning.de
dc.languageende
dc.subject.ddcLandscaping and area planningen
dc.subject.ddcStädtebau, Raumplanung, Landschaftsgestaltungde
dc.subject.ddcÖkologiede
dc.subject.ddcEcologyen
dc.subject.otherGIS tool; digital elevation models; ecosystem services; flood map uncertainties; river floods; urban resiliencede
dc.titleMapping Flood Risk Uncertainty Zones in Support of Urban Resilience Planningde
dc.description.reviewbegutachtet (peer reviewed)de
dc.description.reviewpeer revieweden
dc.identifier.urlhttps://www.cogitatiopress.com/urbanplanning/article/view/4073de
dc.source.journalUrban Planning
dc.source.volume6de
dc.publisher.countryPRTde
dc.source.issue3de
dc.subject.classozArea Development Planning, Regional Researchen
dc.subject.classozÖkologie und Umweltde
dc.subject.classozEcology, Environmenten
dc.subject.classozRaumplanung und Regionalforschungde
dc.rights.licenceCreative Commons - Attribution 4.0en
dc.rights.licenceCreative Commons - Namensnennung 4.0de
internal.statusformal und inhaltlich fertig erschlossende
dc.type.stockarticlede
dc.type.documentjournal articleen
dc.type.documentZeitschriftenartikelde
dc.source.pageinfo258-271de
internal.identifier.classoz20900
internal.identifier.classoz20700
internal.identifier.journal794
internal.identifier.document32
internal.identifier.ddc710
internal.identifier.ddc577
dc.source.issuetopicSmart Urban Governance for Climate Change Adaptationde
dc.identifier.doihttps://doi.org/10.17645/up.v6i3.4073de
dc.description.pubstatusPublished Versionen
dc.description.pubstatusVeröffentlichungsversionde
internal.identifier.licence16
internal.identifier.pubstatus1
internal.identifier.review1
internal.dda.referencehttps://www.cogitatiopress.com/urbanplanning/oai/@@oai:ojs.cogitatiopress.com:article/4073
ssoar.urn.registrationfalsede


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