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[journal article]

dc.contributor.authorMontalto, Francode
dc.contributor.authorDenk, Daniellede
dc.contributor.authorKricun, Andrewde
dc.contributor.authorBelliveau-Nance, Marysede
dc.contributor.authorRothstein, Ericde
dc.contributor.authorRangarajan, Sride
dc.contributor.authorRahman, Shudiptode
dc.contributor.authorCucchi, Anthonyde
dc.contributor.authorO’Rourke, Shaunde
dc.contributor.authorZidar, Katede
dc.contributor.authorShih, Justinde
dc.date.accessioned2018-08-10T08:56:18Z
dc.date.available2018-08-10T08:56:18Z
dc.date.issued2017de
dc.identifier.issn2183-7635de
dc.identifier.urihttps://www.ssoar.info/ssoar/handle/document/58404
dc.description.abstractThis study demonstrates a decision-support framework for planning Green Infrastructure (GI) systems that maximize urban ecosystem services in Camden, NJ. Seven key ecosystem services are evaluated (urban agriculture expansion, combined sewer overflow reduction, heat island reduction, flooding reduction, capacity building/green jobs expansion, fitness expansion, and stress reduction), to produce a normalized value for each service for each drainage sub-basin within the city. Gaps in ecosystem services are then mapped and utilized to geographically prioritize different kinds of multifunctional GI. Conceptual designs are developed for four site typologies: parks, schools, vacant lots, and brownfield sites. For one demonstration site, additional analysis is presented on urban engagement, life cycle cost reduction, and new sources of funding. What results is an integrated, long-term vision where multifunctional GI systems can be readily customized to meet multiple needs within urban communities. This study provides a portable and replicable framework for leveraging the regulatory requirement to manage stormwater to meet broader urban revitalization goals, all through a decentralized network of green infrastructure assets.de
dc.languageende
dc.subject.ddcStädtebau, Raumplanung, Landschaftsgestaltungde
dc.subject.ddcLandscaping and area planningen
dc.subject.ddcÖkologiede
dc.subject.ddcEcologyen
dc.subject.otherecosystem services; green infrastructure; stormwater management; urban redevelopmentde
dc.titleA Framework for Multifunctional Green Infrastructure Investment in Camden, NJde
dc.description.reviewbegutachtet (peer reviewed)de
dc.description.reviewpeer revieweden
dc.identifier.urlhttps://www.cogitatiopress.com/urbanplanning/article/view/1038de
dc.source.journalUrban Planning
dc.source.volume2de
dc.publisher.countryPRT
dc.source.issue3de
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.pageinfo56-73de
internal.identifier.classoz20700
internal.identifier.classoz20900
internal.identifier.journal794
internal.identifier.document32
internal.identifier.ddc710
internal.identifier.ddc577
dc.source.issuetopicSmart Solutions for Sustainable Citiesde
dc.identifier.doihttps://doi.org/10.17645/up.v2i3.1038de
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/1038
ssoar.urn.registrationfalsede


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