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[journal article]

dc.contributor.authorMosler, Saruhande
dc.contributor.authorHobson, Peterde
dc.date.accessioned2021-10-21T10:56:00Z
dc.date.available2021-10-21T10:56:00Z
dc.date.issued2021de
dc.identifier.issn2183-7635de
dc.identifier.urihttps://www.ssoar.info/ssoar/handle/document/75341
dc.description.abstractThe global nature-climate crisis along with a fundamental shift in world population towards cities and towns has sharpened the focus on the role of urban green infrastructure. Green infrastructure has the potential to deliver cost-effective, nature-based solutions to help mitigate problems of climate change as well as provide improved human well-being through the ecosystem services inherent in landscapes rich in biodiversity. The absence of under-pinning science, specifically complex systems science and ecosystem theory in the design and planning of urban green infrastructure, has limited the capacity of these landscapes to deliver ecosystem services and to effectively demonstrate natural resilience to the impacts of climate change. To meet future challenges of environmental uncertainty and social change, the design of urban green space should embrace an adaptive ecosystem-based approach that includes fully integrated participatory planning and implementation strategies founded on principles of close to nature science. Our article offers two models to inform green space planning: urban green space framework and sustainable urban community network. Both concepts provide the foundation for six ecosystem-based design principles. In a case study on Essex green infrastructure, UK, recommendations made by the Essex Climate Action Commission to transform land management practices are presented as examples of adopting principles of the ecosystem approach and nature-based science. Our article concludes by emphasising the importance of reconnecting society with nature in cities through close-to-nature design of urban green space to secure essential ecosystem services and to build resilience to the impacts of climate change.de
dc.languageende
dc.subject.ddcStädtebau, Raumplanung, Landschaftsgestaltungde
dc.subject.ddcLandscaping and area planningen
dc.subject.ddcÖkologiede
dc.subject.ddcEcologyen
dc.subject.otherEssex Climate Action Plan; ecosystem-based approach; nature-based solutions; sustainable urban community network; urban green infrastructure; urban green space frameworkde
dc.titleClose-To-Nature Heuristic Design Principles for Future Urban Green Infrastructurede
dc.description.reviewbegutachtet (peer reviewed)de
dc.description.reviewpeer revieweden
dc.identifier.urlhttps://www.cogitatiopress.com/urbanplanning/article/view/4451de
dc.source.journalUrban Planning
dc.source.volume6de
dc.publisher.countryPRTde
dc.source.issue4de
dc.subject.classozRaumplanung und Regionalforschungde
dc.subject.classozArea Development Planning, Regional Researchen
dc.subject.classozÖkologie und Umweltde
dc.subject.classozEcology, Environmenten
dc.rights.licenceCreative Commons - Namensnennung 4.0de
dc.rights.licenceCreative Commons - Attribution 4.0en
internal.statusformal und inhaltlich fertig erschlossende
dc.type.stockarticlede
dc.type.documentZeitschriftenartikelde
dc.type.documentjournal articleen
dc.source.pageinfo67-79de
internal.identifier.classoz20700
internal.identifier.classoz20900
internal.identifier.journal794
internal.identifier.document32
internal.identifier.ddc710
internal.identifier.ddc577
dc.source.issuetopicTowards Green(er) Cities: Contextualizing Green Benefits for Urban Spaces and Contemporary Societiesde
dc.identifier.doihttps://doi.org/10.17645/up.v6i4.4451de
dc.description.pubstatusVeröffentlichungsversionde
dc.description.pubstatusPublished Versionen
internal.identifier.licence16
internal.identifier.pubstatus1
internal.identifier.review1
internal.dda.referencehttps://www.cogitatiopress.com/urbanplanning/oai/@@oai:ojs.cogitatiopress.com:article/4451
ssoar.urn.registrationfalsede


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