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Land use and land cover dynamics: Implications for thermal stress and energy demands

dc.contributor.authorAdeyeri, Oluwafemi E.en
dc.contributor.authorZhou, Wenen
dc.contributor.authorLaux, Patricken
dc.contributor.authorWang, Xuanen
dc.contributor.authorDieng, Diarraen
dc.contributor.authorWidana, Lakshani A. E.en
dc.contributor.authorUsman, Muhammaden
dc.date.accessioned2025-12-16T01:39:41Z
dc.date.available2025-12-16T01:39:41Z
dc.date.issued2023-04-12en
dc.description.abstractThis study examined the interaction between land use and land cover (LULC) dynamics, trend and thermal stress distribution using the universal thermal comfort index (UTCI) and different LULC classifications under two Coupled Model Intercomparison Project Phase 6 (CMIP6) Shared Socioeconomic Pathways (i.e., SSP 370 and 585) climate and land use scenarios for the historical (1959-2014) and future period (2045-2100). The moderate to strong cold stress in the annual and winter climatology in the midlatitudes was replaced by no thermal stress in the summer, while the summertime ranged from moderate to strong heat stress. A negative correlation was observed between thermal stress and southern hemispheric primary forests. Perennial croplands had the most dynamic changes in intensity during the historical period. Primary and secondary forests had an active influence on global thermal stress. Areas in the tropics recording moderate heat stress coincided with secondary nonforest, pastureland, and annual cropland expansions. The conversion of forest to range land and croplands and the subsequent negative forest trends increased the severity of thermal stress. The future projection showed intense thermal stress; however, the SSP-585 signals were more potent. As a result, cooling demands will rise, and heating demands will decline, yet, improved thermal comfort necessitates a higher cooling capacity, especially in the summer. Thermal stress may make it difficult for many cooling systems to meet people's energy demands. These could be a driving factor in shaping better land use policies, improving energy demand preparedness, and elucidating the potentially severe impacts of thermal stress.en
dc.description.statusPeer-revieweden
dc.format.extent17en
dc.identifier.issn1364-0321en
dc.identifier.otherWOS:001030028700001en
dc.identifier.otherORCID:/0000-0002-9735-0677/work/189655215en
dc.identifier.scopus85152124612en
dc.identifier.urihttps://hdl.handle.net/1885/733795348
dc.language.isoenen
dc.sourceRenewable and Sustainable Energy Reviewsen
dc.subjectCmip6en
dc.subjectEnergy demanden
dc.subjectLand use land coveren
dc.subjectMachine learningen
dc.subjectThermal stressen
dc.subjectTrenden
dc.titleLand use and land cover dynamics: Implications for thermal stress and energy demandsen
dc.typeJournal articleen
dspace.entity.typePublicationen
local.contributor.affiliationAdeyeri, Oluwafemi E.; City University of Hong Kongen
local.contributor.affiliationZhou, Wen; Fudan Universityen
local.contributor.affiliationLaux, Patrick; Helmholtz Associationen
local.contributor.affiliationWang, Xuan; City University of Hong Kongen
local.contributor.affiliationDieng, Diarra; Helmholtz Associationen
local.contributor.affiliationWidana, Lakshani A. E.; City University of Hong Kongen
local.contributor.affiliationUsman, Muhammad; Deakin Universityen
local.identifier.citationvolume179en
local.identifier.doi10.1016/j.rser.2023.113274en
local.identifier.puree733d540-d362-4255-921b-c5b1989b62bcen
local.identifier.urlhttps://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=anu_research_portal_plus2&SrcAuth=WosAPI&KeyUT=WOS:001030028700001&DestLinkType=FullRecord&DestApp=WOS_CPLen
local.type.statusPublisheden

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