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Typical and extreme weather datasets for studying the resilience of buildings to climate change and heatwaves.

Authors :
Machard, Anaïs
Salvati, Agnese
P. Tootkaboni, Mamak
Gaur, Abhishek
Zou, Jiwei
Wang, Liangzhu Leon
Baba, Fuad
Ge, Hua
Bre, Facundo
Bozonnet, Emmanuel
Corrado, Vincenzo
Luo, Xuan
Levinson, Ronnen
Lee, Sang Hoon
Hong, Tianzhen
Salles Olinger, Marcello
Machado, Rayner Maurício e Silva
da Guarda, Emeli Lalesca Aparecida
Veiga, Rodolfo Kirch
Lamberts, Roberto
Source :
Scientific Data; 5/23/2024, Vol. 11 Issue 1, p1-21, 21p
Publication Year :
2024

Abstract

We present unprecedented datasets of current and future projected weather files for building simulations in 15 major cities distributed across 10 climate zones worldwide. The datasets include ambient air temperature, relative humidity, atmospheric pressure, direct and diffuse solar irradiance, and wind speed at hourly resolution, which are essential climate elements needed to undertake building simulations. The datasets contain typical and extreme weather years in the EnergyPlus weather file (EPW) format and multiyear projections in comma-separated value (CSV) format for three periods: historical (2001–2020), future mid-term (2041–2060), and future long-term (2081–2100). The datasets were generated from projections of one regional climate model, which were bias-corrected using multiyear observational data for each city. The methodology used makes the datasets among the first to incorporate complex changes in the future climate for the frequency, duration, and magnitude of extreme temperatures. These datasets, created within the IEA EBC Annex 80 "Resilient Cooling for Buildings", are ready to be used for different types of building adaptation and resilience studies to climate change and heatwaves. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20524463
Volume :
11
Issue :
1
Database :
Complementary Index
Journal :
Scientific Data
Publication Type :
Academic Journal
Accession number :
177464996
Full Text :
https://doi.org/10.1038/s41597-024-03319-8