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Using cool pavements as a mitigation strategy to fight urban heat island—A review of the actual developments

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TLDR
In this article, the main thermal and optical parameters defining the thermal performance of pavements are analyzed and the main technological achievements on both fields are reviewed while existing applications are described and performance data are given when available.
Abstract
Heat island phenomenon rises the temperature of cities, increases the energy demand for cooling and deteriorates comfort conditions in the urban environment. To counterbalance the impact of the phenomenon, important mitigation techniques have been proposed and developed. Pavements present a very high fraction of the urban areas and contribute highly to the development of heat island in cities. The use of cool pavements presenting substantially lower surface temperature and reduced sensible heat flux to the atmosphere, appears to be one of the most important proposed mitigation solutions. The present paper investigates and describes the actual state of the art on the field of cool pavements. The main thermal and optical parameters defining the thermal performance of pavements are analyzed. Almost all of the developed technologies, where data and results are available, are considered while emphasis is given on the presentation of reflective and permeable/water retentive pavements. The main technological achievements on both fields are reviewed while existing applications are described and performance data are given when available. The existing results clearly show that the mitigation and cooling potential of cool pavements is very significant and can highly contribute to decrease temperature on the urban environment.

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Journal ArticleDOI

The urban heat island effect, its causes, and mitigation, with reference to the thermal properties of asphalt concrete.

TL;DR: This literature review demonstrates that UHI mitigation techniques are best used in combination with each other and concluded that the current mitigation measures need development to make them relevant to various climates and throughout the year.
Journal ArticleDOI

A review on the development of cool pavements to mitigate urban heat island effect

TL;DR: In this paper, the authors synthesize the existing definition, physical mechanism, and typical cooling techniques of cool pavements, presenting the influence of these pavements on the urban thermal environment.
Journal ArticleDOI

A review on the CFD analysis of urban microclimate

TL;DR: A review of research reported in journal publications on CFD studies of urban microclimate till the end of 2015 suggests a possible change in this trend as the results from CFD simulations can be linked up with different aspects and thus, CFD can play an important role in transferring urban climate knowledge into engineering and design practice.
Journal ArticleDOI

Local climate change and urban heat island mitigation techniques – the state of the art

TL;DR: In this paper, the state of the art in terms of local climate change and urban heat island mitigation techniques are presented in detail, in particular developments in the field on highly reflective materials, cool and green roofs, cool pavements, urban green and of other mitigation technologies.
Journal ArticleDOI

A review of mitigating strategies to improve the thermal environment and thermal comfort in urban outdoor spaces

TL;DR: The mitigation strategies improved the urban thermal environment to a greater extent in hotter and drier climates, and Vegetation, cool surface, and water bodies provided less cooling in compact urban spaces than in open areas.
References
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Journal ArticleDOI

Cool surfaces and shade trees to reduce energy use and improve air quality in urban areas

TL;DR: In this article, an analysis of temperature trends for the last 100 years in several large U.S. cities indicate that, since ∼1940, temperatures in urban areas have increased by about 0.5-3.0°C.
Journal ArticleDOI

Cooling the cities – A review of reflective and green roof mitigation technologies to fight heat island and improve comfort in urban environments

TL;DR: In this article, the authors present the state of the art on both the above technologies, when applied in the city scale, and present the definition of the limits, the boundaries and the conditions under which the considered technologies reach their better performance in a synthetic way.
Journal ArticleDOI

PCM thermal storage in buildings: A state of art

TL;DR: A comprehensive review of various possible methods for heating and cooling in buildings is discussed in this article, where the thermal performance of various types of systems like PCM trombe wall, PCM wallboards, and PCM shutters are presented.
Journal ArticleDOI

On the impact of urban climate on the energy consumption of buildings

TL;DR: In this article, the authors assess the impact of urban climate on the energy consumption of buildings and find that for the city of Athens, where the mean heat island intensity exceeds 10°C, the cooling load of urban buildings may be doubled, the peak electricity load for cooling purposes may be tripled especially for higher set point temperatures, while the minimum COP value of air conditioners may be decreased up to 25% because of the higher ambient temperatures.
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