Digital geocomputational technologies for the metaproject of urban green infrastructures

The paper presents a model to evaluate the ecological efficiency of urban green areas to support the meta-design of ‘green infrastructures’. The model was implemented with a GIS-based framework to extract ecological efficiency maps. The model was experimented in the case study area of Naples, Italy...

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Main Authors: Valeria D’Ambrosio, Ferdinando Di Martino, Marina Rigillo
Format: Article
Language:English
Published: LetteraVentidue Srl 2022-06-01
Series:Agathón
Subjects:
Online Access:http://www.agathon.it/agathon/article/view/300
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author Valeria D’Ambrosio
Ferdinando Di Martino
Marina Rigillo
author_facet Valeria D’Ambrosio
Ferdinando Di Martino
Marina Rigillo
author_sort Valeria D’Ambrosio
collection DOAJ
description The paper presents a model to evaluate the ecological efficiency of urban green areas to support the meta-design of ‘green infrastructures’. The model was implemented with a GIS-based framework to extract ecological efficiency maps. The model was experimented in the case study area of Naples, Italy and aims to relate the different ecological capacities with the medium- and long-term heat wave impact scenarios on the population subject to energy poverty. The results of the experiment validate the model in terms of usability and replicability highlighting its added value as a support tool for decision-makers, in particular for the meta-design of green infrastructures in urban areas.
format Article
id doaj-art-2e13b3660d8b4d579c1ec271643272d3
institution Kabale University
issn 2464-9309
2532-683X
language English
publishDate 2022-06-01
publisher LetteraVentidue Srl
record_format Article
series Agathón
spelling doaj-art-2e13b3660d8b4d579c1ec271643272d32025-02-02T16:12:41ZengLetteraVentidue SrlAgathón2464-93092532-683X2022-06-0111online10.19229/2464-9309/11142022Digital geocomputational technologies for the metaproject of urban green infrastructures Valeria D’Ambrosio0Ferdinando Di Martino1Marina Rigillo2‘Federico II’ University of Naples (Italy)‘Federico II’ University of Naples (Italy)‘Federico II’ University of Naples (Italy) The paper presents a model to evaluate the ecological efficiency of urban green areas to support the meta-design of ‘green infrastructures’. The model was implemented with a GIS-based framework to extract ecological efficiency maps. The model was experimented in the case study area of Naples, Italy and aims to relate the different ecological capacities with the medium- and long-term heat wave impact scenarios on the population subject to energy poverty. The results of the experiment validate the model in terms of usability and replicability highlighting its added value as a support tool for decision-makers, in particular for the meta-design of green infrastructures in urban areas. http://www.agathon.it/agathon/article/view/300green infrastructuresecosystem servicesecological efficiencyimpact scenariosGIS-based model
spellingShingle Valeria D’Ambrosio
Ferdinando Di Martino
Marina Rigillo
Digital geocomputational technologies for the metaproject of urban green infrastructures
Agathón
green infrastructures
ecosystem services
ecological efficiency
impact scenarios
GIS-based model
title Digital geocomputational technologies for the metaproject of urban green infrastructures
title_full Digital geocomputational technologies for the metaproject of urban green infrastructures
title_fullStr Digital geocomputational technologies for the metaproject of urban green infrastructures
title_full_unstemmed Digital geocomputational technologies for the metaproject of urban green infrastructures
title_short Digital geocomputational technologies for the metaproject of urban green infrastructures
title_sort digital geocomputational technologies for the metaproject of urban green infrastructures
topic green infrastructures
ecosystem services
ecological efficiency
impact scenarios
GIS-based model
url http://www.agathon.it/agathon/article/view/300
work_keys_str_mv AT valeriadambrosio digitalgeocomputationaltechnologiesforthemetaprojectofurbangreeninfrastructures
AT ferdinandodimartino digitalgeocomputationaltechnologiesforthemetaprojectofurbangreeninfrastructures
AT marinarigillo digitalgeocomputationaltechnologiesforthemetaprojectofurbangreeninfrastructures