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Impact of Climate Change by 2100 on the Microclimate of Public Places

  
21 ago 2024
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Boukarta S. (2019), Déterminants de la forme urbaine générant le potentiel de maîtrise de l’énergie en zone semi-aride. Application sur le cas de Djelfa en Algérie, doctoral dissertation, EPAU. Search in Google Scholar

Boukarta S., Mokhtari A. (2017), Analyse multicritère pour une caractérisation énergétique des formes Urbaines, “Courrier du Savoir”, 24, 163–174. Search in Google Scholar

Chan A.L.S. (2011), Developing future hourly weather files for studying the impact of climate change on building energy performance in Hong Kong, “Energy and Buildings”, 43(10), 2860–2868. Search in Google Scholar

Dousset B., Gourmelon F., Laaidi K., Zeghnoun A., Giraudet E., Bretin P., Mauri E., Vandentorren S. (2011), Satellite monitoring of summer heat waves in the Paris metropolitan area, “International Journal of Climatology”, 31(2), 313–323. Search in Google Scholar

Emilsson T., Ode Sang Å. (2017), Impacts of climate change on urban areas and nature-based solutions for adaptation, in: Nature-based solutions to climate change adaptation in urban areas. Linkages between science, policy and practice, eds. N. Kabisch, H. Korn, J. Stadler, A. Bonn, Springer, Cham, 15–27. Search in Google Scholar

Heaviside C., Cai X.M., Vardoulakis S. (2015), The effects of horizontal advection on the urban heat island in Birmingham and the West Midlands, United Kingdom during a heatwave, “Quarterly Journal of the Royal Meteorological Society”, 141(689), 1429–1441. Search in Google Scholar

Huttner S. (2012), Further development and application of the 3D microclimate simulation ENVI-met, dissertation, Universität Mainz. Search in Google Scholar

IPCC (2014), IPCC Fifth Assessment Report – Synthesis Report, IPPC Rome, Italy. Search in Google Scholar

Jentsch M.F., Bahaj A.S., James P.A. (2008), Climate change future proofing of buildings – Generation and assessment of building simulation weather files, “Energy and Buildings”, 40(12), 2148–2168. Search in Google Scholar

Khelifi L., Soufiane B., Rafik B., Youcef K. (2019), Le passage couvert comme régulateur socio-climatique dans le tissu traditionnel, Cas d’étude: le ksar de Timimoun (climat chaud aride), in: International Conference on Materials, Patrimony and the Environment in Arid Zones. Search in Google Scholar

Kitous S. (2013), Le rapport entre morphologie et climat urbain dans le ksar de Ghardaïa: le cas de la ventilation naturelle, doctoral dissertation, École Polytechnique d’Architecture et d’Urbanisme d’Alger. Search in Google Scholar

Mylona A. (2012), The use of UKCP09 to produce weather files for building simulation, “Building Services Engineering Research and Technology”, 33(1), 51–62. Search in Google Scholar

Nakicenovic N. et al. (2000), IPCC Special Report: Emissions scenarios: Summary for policymakers, Intergovernmental Panel on Climate Change, Genf. Search in Google Scholar

Oke T.R. (1980), Thermal environment in urban areas, Swedish Council for Buildings Research. Search in Google Scholar

Oke T.R. (1982), The energetic basis of the urban heat island, “Quarterly Journal of the Royal Meteorological Society” 108(455), 1–24. Search in Google Scholar

Oke T.R. (2011), Urban heat islands, in: The Rout-ledge Handbook of Urban Ecology, eds. I. Douglas, D. Goode, M. Houck, R. Wang, Routledge, New York, 120–131. Search in Google Scholar

Oke T.R., Maxwell G.B. (1975), Urban heat island dynamics in Montreal and Vancouver, “Atmospheric Environment” (1967), 9(2), 191–200. Search in Google Scholar

Tootkaboni M.P., Ballarini I., Zinzi M., Corrado V. (2021), A comparative analysis of different future weather data for building energy performance simulation, “Climate” 9(2), 37. Search in Google Scholar

Remund J., Müller S., Schilter C., Rihm B. (2010), The use of Meteonorm weather generator for climate change studies, in: 10th EMS Annual Meeting Abstracts, 13–17 September, Zürich. Search in Google Scholar

Santamouris M., Papanikolaou N., Livada I., Koronakis I., Georgakis C., Argiriou A., Assimakopoulos D.N. (2001), On the impact of urban climate on the energy consumption of buildings, “Solar Energy”, 70(3), 201–216. Search in Google Scholar

Tol R.S. (2018), The economic impacts of climate change, “Review of Environmental Economics and Policy”, 12(1), 4–25. Search in Google Scholar

Tsoka S., Tsikaloudaki A., Theodosiou T. (2018), Analyzing the ENVI-met microclimate model’s performance and assessing cool materials and urban vegetation applications, “Review of Sustainable Cities And Society”, 43, 55–76. Search in Google Scholar

Tumini I., Rubio-Bellido C. (2016), Measuring climate change impact on urban microclimate: A case study of concepción, “Procedia Engineering”, 161, 2290–2296. Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Architettura e design, Architettura, Architetti, edifici, Urbanistica, Storia, Arte, Arte, in generale