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Effect of Sampietrini Pavers on Urban Heat Islands. | LitMetric

Effect of Sampietrini Pavers on Urban Heat Islands.

Int J Environ Res Public Health

Department of Civil, Constructional and Environmental Engineering, Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, Italy.

Published: December 2021

AI Article Synopsis

  • Cool pavements, including reflective and permeable types, help mitigate urban heat islands, improving comfort in city environments.
  • A study conducted in Rome analyzed the impact of different pavement types—asphalt, traditional sampietrini, and permeable sampietrini—on air temperature using ENVI-met software.
  • Results showed that permeable sampietrini reduced daytime air temperatures more effectively than traditional sampietrini and asphalt, but did not significantly impact human comfort levels.

Article Abstract

Cool pavements are reflective and/or permeable pavements that improve microclimate of urban areas where heat islands cause discomfort to citizens. Stone pavements lower surface temperatures and reduce the amount of heat absorbed. This study assessed, using ENVI-met 4.3 LITE software, how air temperature and predicted mean vote depend on physical properties of the road pavement. A comparative microclimatic analysis was implemented on a rectangular square in Rome (Italy) in the summer, paved in three different ways: asphalt, traditional sampietrini, and permeable sampietrini. The model considered local weather parameters, surrounding fabric, and vegetation to give reliable results in terms of numerical and graphical output using the application tool Leonardo. The tested pavement types affected air temperature during the day, but did not influence this variable in the early morning. Permeable sampietrini pavement was more effective than traditional sampietrini pavement in reducing air temperature compared to the current asphalt surface. The road pavement did not, however, affect human comfort in terms of predicted mean vote. The obtained results are useful for further investigation of parameters that could modify the microclimatic conditions of urban areas.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8701738PMC
http://dx.doi.org/10.3390/ijerph182413108DOI Listing

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