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New developments and future challenges in reducing and controlling heat island effect in urban areas

Author

Listed:
  • Alireza Karimi

    (Universidad de Sevilla)

  • Pir Mohammad

    (Indian Institute of Technology)

  • Antonio García-Martínez

    (Universidad de Sevilla)

  • David Moreno-Rangel

    (Universidad de Sevilla)

  • Darya Gachkar

    (Shahid Beheshti University)

  • Sadaf Gachkar

    (Shahid Beheshti University)

Abstract

The collection of research conducted over the past decade on urban heat islands and its mitigation strategies reflects the new approaches of scientists, researchers, and government agencies on urban design and planning about the intensity of urban heat islands and their impact on urban texture. This study aims to analyze the trend of research on urban heat islands and strategies to reduce them during the last decade (2010–2020). This review has prepared from 91 research studies and evaluated the main measures to reduce the urban heat island that is commonly used today. In addition, the distribution based on the Köppen–Geiger climate classification, the review of different methodologies, and the funding of research has also been evaluated. Analysis has revealed that studies in humid subtropical (Cfa), hot summer Mediterranean (Csa), and temperate oceanic (Cfb) climates have the largest share among other climatic regions that some measures (urban parks, urban trees, green roofs) have played a critical role for researchers and policy makers more than other influential factors in reducing urban heat islands. It is also noticeable that the relative share of research provided in the four main groups of mitigation measures is almost the same; this similarity can be interpreted to support the argument that lack of funding does not have a significant effect on some mitigation measures.

Suggested Citation

  • Alireza Karimi & Pir Mohammad & Antonio García-Martínez & David Moreno-Rangel & Darya Gachkar & Sadaf Gachkar, 2023. "New developments and future challenges in reducing and controlling heat island effect in urban areas," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 25(10), pages 10485-10531, October.
  • Handle: RePEc:spr:endesu:v:25:y:2023:i:10:d:10.1007_s10668-022-02530-0
    DOI: 10.1007/s10668-022-02530-0
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    References listed on IDEAS

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    1. Andreou, E., 2014. "The effect of urban layout, street geometry and orientation on shading conditions in urban canyons in the Mediterranean," Renewable Energy, Elsevier, vol. 63(C), pages 587-596.
    2. Kleerekoper, Laura & van Esch, Marjolein & Salcedo, Tadeo Baldiri, 2012. "How to make a city climate-proof, addressing the urban heat island effect," Resources, Conservation & Recycling, Elsevier, vol. 64(C), pages 30-38.
    3. Gabriele Manoli & Simone Fatichi & Markus Schläpfer & Kailiang Yu & Thomas W. Crowther & Naika Meili & Paolo Burlando & Gabriel G. Katul & Elie Bou-Zeid, 2019. "Magnitude of urban heat islands largely explained by climate and population," Nature, Nature, vol. 573(7772), pages 55-60, September.
    4. Alessandra Battisti, 2020. "Bioclimatic Architecture and Urban Morphology. Studies on Intermediate Urban Open Spaces," Energies, MDPI, vol. 13(21), pages 1-20, November.
    5. Elena Morini & Ali G. Touchaei & Beatrice Castellani & Federico Rossi & Franco Cotana, 2016. "The Impact of Albedo Increase to Mitigate the Urban Heat Island in Terni (Italy) Using the WRF Model," Sustainability, MDPI, vol. 8(10), pages 1-14, October.
    6. Hirano, Y. & Fujita, T., 2012. "Evaluation of the impact of the urban heat island on residential and commercial energy consumption in Tokyo," Energy, Elsevier, vol. 37(1), pages 371-383.
    7. Umut Erdem & K. Mert Cubukcu & Ayyoob Sharifi, 2021. "An analysis of urban form factors driving Urban Heat Island: the case of Izmir," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(5), pages 7835-7859, May.
    8. Jaffal, Issa & Ouldboukhitine, Salah-Eddine & Belarbi, Rafik, 2012. "A comprehensive study of the impact of green roofs on building energy performance," Renewable Energy, Elsevier, vol. 43(C), pages 157-164.
    9. Peng, Lilliana L.H. & Jiang, Zhidian & Yang, Xiaoshan & Wang, Qingqing & He, Yunfei & Chen, Sophia Shuang, 2020. "Energy savings of block-scale facade greening for different urban forms," Applied Energy, Elsevier, vol. 279(C).
    10. Jou-Man Huang & Liang-Chun Chen, 2020. "A Numerical Study on Mitigation Strategies of Urban Heat Islands in a Tropical Megacity: A Case Study in Kaohsiung City, Taiwan," Sustainability, MDPI, vol. 12(10), pages 1-21, May.
    11. Manso, Maria & Castro-Gomes, João, 2015. "Green wall systems: A review of their characteristics," Renewable and Sustainable Energy Reviews, Elsevier, vol. 41(C), pages 863-871.
    12. Elena Morini & Beatrice Castellani & Andrea Presciutti & Elisabetta Anderini & Mirko Filipponi & Andrea Nicolini & Federico Rossi, 2017. "Experimental Analysis of the Effect of Geometry and Façade Materials on Urban District’s Equivalent Albedo," Sustainability, MDPI, vol. 9(7), pages 1-12, July.
    13. T. Shen & D. H. C. Chow & J. Darkwa, 2016. "Simulating the influence of microclimatic design on mitigating the Urban Heat Island effect in the Hangzhou Metropolitan Area of China," International Journal of Low-Carbon Technologies, Oxford University Press, vol. 11(1), pages 130-139.
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