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Experimental analysis of thermal conductivity of semi-rigid base asphalt pavement

机译:半刚性基层沥青路面导热系数的试验分析

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Thermal conductivity is an important feature of asphalt pavement. However, because of the lacking of a proper experiment device, the experimental analysis of the thermal conductivity of semi-rigid base asphalt pavement is difficult. According to the slab method and Fourier's heat conduction law, an experiment device is developed to examine the coefficient of thermal conductivity of granular mixtures stacked in large volume and help understanding the thermal conductivity of asphalt pavement. This device is used to examine the thermal conductivity of both asphalt mixtures and cement-stabilised aggregates based on Guang-ba motorway construction. The experimental results show that the coefficient of thermal conductivity of both asphalt mixtures and cement-stabilised aggregates linearly increases with the temperature growth. In general, the asphalt mixtures have better thermal conductivity than the cement-stabilised aggregates. In terms of asphalt mixtures, the void ratio heavily affects their thermal conductivity and the aggregates have larger contribution on the thermal conductivity than the binder. In terms of cement-stabilised aggregates, the most important factor of thermal conductivity is the void ratio, followed by gravel size Also the heat conduction of the asphalt pavement is often instantaneous rather than stable.
机译:导热系数是沥青路面的重要特征。但是,由于缺乏合适的实验装置,对半刚性基层沥青路面的导热系数进行实验分析是困难的。根据平板法和傅立叶热导律,研制了一种实验装置,用于检查大体积堆积的粒状混合物的导热系数,有助于理解沥青路面的导热系数。该设备用于根据广坝高速公路的施工情况检查沥青混合料和水泥稳定集料的热导率。实验结果表明,沥青混合料和水泥稳定集料的导热系数均随温度的升高而线性增加。通常,沥青混合物比水泥稳定的骨料具有更好的导热性。就沥青混合料而言,空隙率会严重影响其导热系数,而集料对导热系数的影响要大于粘合剂。就水泥稳定的集料而言,最重要的导热系数是空隙率,其次是砾石尺寸。沥青路面的热传导通常是瞬时的,而不是稳定的。

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