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Inducing directional heat transfer by enhancing directional thermal conductivity of asphalt mixtures for improving asphalt solar collectors

机译:通过增强改善沥青太阳能集热器的沥青混合物的方向导热系来诱导方向传热

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摘要

Low thermal conductivity makes heat conduction in asphalt pavements quite slow, restricting asphalt solar collectors. To enhance the directional thermal conductivity of asphalt mixtures and induce directional heat transfer, directional heat-induced channels are built in asphalt mixtures by using carbon fibers with high axial thermal conductivity. A finite element method is used to simulate and study the temperature field and heat flow distribution of asphalt mixtures. A parametric analysis of the carbon fiber parameters is performed to evaluate the variation in the performance of the effective thermal conductivity of asphalt mixtures. The temperature trend of asphalt mixtures is measured by an indoor irradiation experiment and compared with the simulation results. The results show that heat-induced channels have obvious heat convergence effects and can induce heat to be efficiently conducted along its axial direction. These channels can significantly improve the directional thermal conductivity of asphalt mixtures and are expected to play a heat transfer bridge between the pavement surface and the energy collection system when using them in asphalt solar collectors in the future. (C) 2020 Elsevier Ltd. All rights reserved.
机译:低导热率在沥青路面中的热传导相当慢,限制沥青太阳能收集器。为了增强沥青混合物的定向导热率并诱导定向传热,通过使用具有高轴向导热率的碳纤维在沥青混合物中构建定向热感应通道。有限元方法用于模拟和研究沥青混合物的温度场和热流分布。进行对碳纤维参数的参数分析,以评估沥青混合物的有效导热率的性能的变化。通过室内照射实验测量沥青混合物的温度趋势,并与模拟结果相比。结果表明,热感应通道具有明显的热收融效果,并且可以促使沿轴向有效地进行热量。这些通道可以显着提高沥青混合物的定向导热系数,并且预计将在未来在沥青太阳能集热器中使用它们时,将在路面表面和能量收集系统之间发热桥。 (c)2020 elestvier有限公司保留所有权利。

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