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首页> 外文期刊>Journal of materials in civil engineering >Unidirectional Heat-Transfer Asphalt Pavement for Mitigating the Urban Heat Island Effect
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Unidirectional Heat-Transfer Asphalt Pavement for Mitigating the Urban Heat Island Effect

机译:单向传热沥青路面,减轻城市热岛效应

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摘要

The absorption of solar radiant heat is the primary reason for the high temperature of asphalt pavement and the exacerbation of the urban heat island effect. In this paper, a novel unidirectional heat-transfer (UHT) asphalt pavement structure was proposed, which allows heat transfer along a fixed direction. The UHT effect was demonstrated under lamp lit indoor and sunlit outdoor environments. Compared with the control specimens, the UHT specimens were able to reduce the surface temperatures of 6.2℃ (day) and 1.3℃ (night), after one day's cycle of simulating indoor heat absorption and release. The outdoor measurements showed that reductions of 3.4 and 1.2℃ in the surface temperature of the UHT specimens were achieved during the day and night, respectively, when compared with the temperature of the control specimens. The calculation results also indicated that more than 466 W/m~2 of heat was introduced into the soil and less than 462 W/m~2 of heat was transferred out of the UHT specimens, which validated the self-cooling effect of the designed UHT structures. The proposed gradient thermal conductivity structure is a promising new technology to mitigate the urban heat island effect.
机译:吸收太阳辐射热是造成沥青路面高温和加剧城市热岛效应的主要原因。在本文中,提出了一种新颖的单向传热(UHT)沥青路面结构,该结构允许沿固定方向传热。 UHT效果在室内灯光和室外阳光下得到了证明。在模拟室内吸热和释放的一天周期之后,与对照样品相比,UHT样品能够降低6.2℃(白天)和1.3℃(夜晚)的表面温度。室外测量表明,与对照样品的温度相比,UHT样品的表面温度在白天和晚上分别降低了3.4和1.2℃。计算结果还表明,将超过466 W / m〜2的热量引入土壤,并将不到462 W / m〜2的热量从UHT样品中转移出去,这验证了设计方案的自冷却效果。 UHT结构。拟议的梯度导热结构是缓解城市热岛效应的有前途的新技术。

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