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Cooling Performance and Thermal Radiation Model of Asphalt Mixture with Modified Infrared Powder

机译:用改性红外粉末的沥青混合料的冷却性能和热辐射模型

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摘要

This research studied a new material named modified infrared powder (MIRP) for decreasing the high temperature of asphalt pavements which can help alleviate the urban heat island effect to some extent. Based on the physical apparent density tests of materials and infrared thermal radiation test, the cooling performance of MIRP was obtained. X-ray diffraction analysis and scanning electron microscopy test (SEM) were conducted to analyze the chemical composition and the microstructure of MIRP, respectively. According to the radiant heat transfer theory, a thermal radiation model of the pavement equilibrium temperature was established by microscopic and chemical analysis to study the influence of thermal radiation asphalt mixture and reveal its cooling performance. The results show that the main components of MIRP are metal oxides and nonmetallic oxides which improve its infrared emissivity. Compared with limestone mineral powder asphalt mortar, the asphalt mortar with MIRP had a more compact structure and uniform distribution, and enhanced the overall structural performance of the mixture. The thermal radiation model reveals that the pavement equilibrium temperature combined with the MIRP in asphalt mixture decreases with the increase of the longwave emissivity, and it diminishes with the decrease of the shortwave absorptivity.
机译:该研究研究了一个名为改性红外粉末(MIRP)的新材料,用于降低沥青路面的高温,这有助于减轻城市热岛效果在一定程度上。基于材料和红外热辐射试验的物理表观密度试验,获得MIRP的冷却性能。进行X射线衍射分析和扫描电子显微镜试验(SEM)分别分析化学成分和MiRP的微观结构。根据辐射传热理论,通过微观和化学分析建立了路面平衡温度的热辐射模型,以研究热辐射沥青混合料的影响,揭示其冷却性能。结果表明,MIRP的主要成分是金属氧化物和非金属氧化物,可改善其红外发射率。与石灰石矿物粉沥青砂浆相比,具有MIRP的沥青砂浆结构更紧凑,分布均匀,并提高了混合物的整体结构性能。热辐射模型表明,随着龙波发射率的增加,沥青混合料中的路面平衡温度与MIRP相结合,随着短波吸收率的降低而减少。

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