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Structural and Environmental Benefits of Concrete Inlays for Pavement Preservation

机译:路面防腐混凝土嵌体的结构和环境效益

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Advances in concrete technology have allowed Flowable Fibrous Concrete (FFC) inlays to be an option for pavement preservation through rapid placement, thin-lift construction, durability, and material ductility. By incorporating titanium dioxide (TiO_2) cement, these FFC inlays can also mitigate vehicular greenhouse gas emissions and the Urban Heat Island (UHI) as well as meet structural requirements. A concrete mix incorporating this modified FFC was lab-tested for strength and fracture properties at 7 days and was found to be acceptable for pavement preservation applications. The FFC albedo was measured as 0.26 and the predicted hourly surface temperatures of hypothetically-aged asphalt concrete pavements with and without the FFC inlay were compared over a ten-year period using weather data from Chicago, IL. With a lower surface temperature in 94% of daytime hours, the inlay was effective in mitigating daytime UHI but less effective in nighttime.
机译:混凝土技术的进步已使可流动纤维混凝土(FFC)嵌体成为通过快速放置,薄壁施工,耐用性和材料延展性来保护路面的一种选择。通过掺入二氧化钛(TiO_2)水泥,这些FFC嵌体还可以减轻车辆的温室气体排放量和城市热岛(UHI),并满足结构要求。掺入了这种改性FFC的混凝土混合物在7天时经过了实验室测试,以确定其强度和断裂性能,并被认为可用于路面防腐应用。 FFC的反照率测得为0.26,并使用来自伊利诺伊州芝加哥的天气数据,比较了使用和不使用FFC嵌体的假设时效沥青混凝土路面在10年内的预测小时表面温度。白天94%的表面温度较低,因此嵌体在减轻白天UHI方面有效,但在夜间效果较差。

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