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Numerical Simulation of Temperature Distribution in Conductive Asphalt Solar Collector due to Pavement Material Parameters

机译:路面材料参数对导电沥青太阳能集热器温度分布的数值模拟

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Asphalt pavement serving as solar collector has been developed for the heating and cooling of adjacent buildings as well as to keep the pavement ice-free directly. Material parameters such as thermal conductivity and heat capacity are some of the critical parameters related to the efficiency of the asphalt collector. Graphite powders were utilized as thermal conductive fillers to make asphalt collector conductive so as to improve the efficiency of the asphalt collector. The material parameters change with the addition of graphite consequently. In order to access the solar energy absorbability of conductive asphalt collector, it is necessary to predict the temperature distribution within the asphalt layers. A transient, two-dimensional finite element model is developed to predict temperature distributions in conductive asphalt solar collector due to material parameters. The ability of accurately predict asphalt pavement temperature at different depths will greatly help pavement engineers in determining the solar energy potential of conductive asphalt collector. The results from the prediction model show that the surface temperature of pavement decreases slightly with addition of graphite. The differential maximum asphalt temperature variation at a depth of 10cm is significantly more than that at the surface. Higher temperature and lower temperature gradient can also be observed at the depth of 10cm because the heat conduction is accelerated by the addition of graphite.
机译:已经开发出用作太阳能收集器的沥青路面,用于相邻建筑物的加热和冷却以及直接保持路面无冰。诸如导热率和热容量之类的材料参数是与沥青收集器效率相关的一些关键参数。石墨粉被用作导热填料以使沥青集电器具有导电性,从而提高了沥青集电器的效率。因此,材料参数随添加石墨而变化。为了获得导电性沥青收集器的太阳能吸收能力,必须预测沥青层内的温度分布。建立了瞬态二维有限元模型,以预测由于材料参数而导致的导电沥青太阳能集热器中的温度分布。准确预测不同深度的沥青路面温度的能力将极大地帮助路面工程师确定导电性沥青集热器的太阳能潜力。预测模型的结果表明,路面的表面温度随添加石墨而略有下降。在10厘米深度处最大沥青温度差异明显大于表面温度差异。在10cm的深度处还可以观察到较高的温度和较低的温度梯度,因为通过添加石墨可以加速热传导。

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