Different Measurement Methods with Asphalt Solar Collectors Support Utilizing Energy Harvesting to Mitigate Urban Heat Island Effect
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Mäkiranta, A., & Martinkauppi, B. (2026). Different Measurement Methods with Asphalt Solar Collectors Support Utilizing Energy Harvesting to Mitigate Urban Heat Island Effect. In M. Pasetto, E. Pasquini, A. Cannone Falchetto, G. Giacomello, & A. Baliello (Eds.), Proceedings of the 2nd RILEM International Symposium on Bituminous Materials (ISBM 2026): Volume 2, (pp. 579–583). Rilem bookseries, vol. 74. Springer. https://doi.org/10.1007/978-3-032-30655-5_85
© 2026 Springer. This is an Accepted Manuscript version of the following work: Anne Mäkiranta & Birgitta Martinkauppi, Different Measurement Methods with Asphalt Solar Collectors Support Utilizing Energy Harvesting to Mitigate Urban Heat Island Effect, Springer. This version of the manuscript has been accepted for publication, after final editorial and peer review (where applicable) is complete, but is not the Version of Record and does not reflect post-acceptance improvements (such as copyediting or typesetting), or any corrections. The final authenticated version is available online at: https://doi.org/10.1007/978-3-032-30655-5_85. Use of this Accepted Manuscript version is subject to the publisher’s Accepted Manuscript terms of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
Lataukset22
Pysyvä osoite
Kuvaus
Urban Heat Island (UHI) effect poses significant challenges to sustainable urban development, particularly in densely built environments. Asphalt pavements, which dominate urban surfaces, contribute substantially to heat retention and radiation. This short review explores how different measurement and modeling methods in asphalt solar collector (ASC) studies—such as surface temperature monitoring, thermal imaging, and embedded sensor networks—can support the integration of energy harvesting technologies to mitigate UHI effects. By analyzing thermal behavior and energy fluxes across various asphalt compositions and configurations, the optimal conditions for deploying heat exchange and thermoelectric systems can be settled. The findings suggest that precise, multi-modal measurement approaches not only enhance understanding of heat dynamics in urban pavements but also enable targeted energy harvesting strategies that reduce surface temperatures and contribute to urban cooling. This interdisciplinary approach offers a promising pathway toward climate-resilient infrastructure and smarter energy utilization in cities.
Emojulkaisu
Proceedings of the 2nd RILEM International Symposium on Bituminous Materials (ISBM 2026): Volume 2
ISBN
978-3-032-30655-5
ISSN
2211-0852
2211-0844
2211-0844
Aihealue
Kausijulkaisu
Rilem bookseries|74
OKM-julkaisutyyppi
A3 Kirjan tai muun kokoomateoksen osa (vertaisarvioitu)
