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Comprehensive Laboratory Testing and Evaluation of the Evaporative Cooling Effect of Pavement Materials

机译:路面材料蒸发冷却效果的综合实验室测试和评估

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This paper presents a methodology to quantify the evaporative cooling effect (ECE) of eight paving mixtures, including asphalt and cement concrete types with varying material properties in the laboratory. Further, quantification of the ECE of the different mixtures entailed recommendation of those materials that could be appropriate to mitigate urban heat island (UHI) effects. In dry and wet conditions, asphalt-rubber open-graded and dense asphalt mixtures had nonlinear temperature gradients and higher temperatures at surface, 25- and 50-mm depths, whereas asphalt-rubber gap-graded mixture had insignificant gradients and lower temperatures. Open and dense-graded asphalt mixtures had higher temperature differentials between dry and wet conditions than gap-graded mixture illustrating that they will have higher ECE. However, based on temperature gradients and profiles, gap-graded mix showed an unvarying thermal behavior under dry and wet conditions demonstrating that thermophysical properties also play prominent roles in heat energy transport and storage through the system. Pervious concrete mixtures with 20 % and 25 % air voids depicted nonlinear temperature gradients and higher temperature differentials compared to pervious concrete with 30 % air voids and conventional concrete mixtures that provided superior ECE and could indeed act as suitable UHI mitigation strategies.
机译:本文提出了一种方法,用于量化实验室中八种铺装混合物的蒸发冷却效果(ECE),包括沥青和水泥混凝土类型的材料特性各不相同。此外,对不同混合物的ECE进行定量分析后,建议使用可能适合减轻城市热岛效应(UHI)的那些材料。在干燥和湿润的条件下,沥青-橡胶开放级和致密的沥青混合物在25、50和50毫米深度处具有非线性温度梯度和较高的温度,而沥青-橡胶间隙梯度混合物的梯度较小且温度较低。开放和致密等级的沥青混合料在干湿条件下的温差比间隙等级的混合料高,这说明它们的ECE更高。然而,基于温度梯度和分布,间隙梯度混合料在干燥和潮湿条件下均显示出不变的热行为,表明热物理性质在通过系统的热能传输和存储中也起着重要作用。与具有30%空气空隙的透水性混凝土和常规混凝土混合物相比,具有20%和25%空气空隙的透水性混凝土混合物表现出非线性温度梯度和更高的温差,这些混凝土混合物提供了卓越的ECE,并且确实可以作为合适的UHI缓解策略。

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