Publication:

Spatio-Temporal Relationship between Land Cover and Land Surface Temperature in Urban Areas: A Case Study in Geneva and Paris

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2025-06-03T15:36:09Z

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280842

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SDSC-GE

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PH-ENAC

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SAR-ENS

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0000-0001-8954-321X

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ENAC

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EPFL

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Delhay, Sophie

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Beyer, Katrin

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Verscheure, Olivier

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Beyer, Katrin

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datacite.rights

openaccess

dc.contributor.author

Ge, Xu

dc.contributor.author

Mauree, Dasaraden

dc.contributor.author

Castello, Roberto

dc.contributor.author

Scartezzini, Jean-Louis

dc.date.accessioned

2020-10-13T08:41:44

dc.date.available

2020-10-13T08:41:44

dc.date.created

2020-10-13

dc.date.issued

2020

dc.date.modified

2025-01-24T03:06:15.993463Z

dc.description.abstract

Currently, more than half of the world’s population lives in cities, which leads to major changes in land use and land surface temperature (LST). The associated urban heat island (UHI) effects have multiple impacts on energy consumption and human health. A better understanding of how different land covers affect LST is necessary for mitigating adverse impacts, and supporting urban planning and public health management. This study explores a distance-based, a grid-based and a point-based analysis to investigate the influence of impervious surfaces, green area and waterbodies on LST, from large (distance and grid based analysis with 400 m grids) to smaller (point based analysis with 30 m grids) scale in the two mid-latitude cities of Paris and Geneva. The results at large scale confirm that the highest LST was observed in the city centers. A significantly positive correlation was observed between LST and impervious surface density. An anticorrelation between LST and green area density was observed in Paris. The spatial lag model was used to explore the spatial correlation among LST, NDBI, NDVI and MNDWI on a smaller scale. Inverse correlations between LST and NDVI and MNDWI, respectively, were observed. We conclude that waterbodies display the greatest mitigation on LST and UHI effects both on the large and smaller scale. Green areas play an important role in cooling effects on the smaller scale. An increase of evenly distributed green area and waterbodies in urban areas is suggested to lower LST and mitigate UHI effects.

dc.description.notes

This is an open access article distributed under the Creative Commons Attribution License.

dc.description.sponsorship

LESO-PB

dc.identifier.doi

10.3390/ijgi9100593

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/172432

dc.relation

https://infoscience.epfl.ch/record/280842/files/ijgi-09-00593.pdf

dc.relation.journal

ISPRS International Journal of Geo-Information

dc.subject

green urban infrastructure

dc.subject

satellite imagery

dc.subject

impervious surface

dc.subject

land surface temperature

dc.subject

urban heat islands

dc.subject

urban waterbodies

dc.title

Spatio-Temporal Relationship between Land Cover and Land Surface Temperature in Urban Areas: A Case Study in Geneva and Paris

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.legacy.oai-identifier

oai:infoscience.epfl.ch:280842

epfl.curator.email

jorge.rodriguesdematos@epfl.ch

epfl.lastmodified.email

jorge.rodriguesdematos@epfl.ch

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

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ENAC

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fulltext

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article

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OpenAIREv4

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REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.endPage

25, 593

oaire.citation.issue

10

oaire.citation.startPage

1

oaire.citation.volume

9

oaire.licenseCondition

CC BY

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