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Cooling permafrost embankment by enhancing oriented heat conduction in asphalt pavement

机译:通过增强沥青路面定向传热来冷却多年冻土路堤

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摘要

In this paper, a new method was proposed to decrease the heat accumulation in permafrost embankment by controlling an oriented heat transfer in asphalt pavement Two highly oriented heat-induced structures, named G-OHIS (only gradient thermal conductivity) and G+R-OHIS (combined gradient thermal conductivity and heat reflective layer), were designed by using two indexes of summertime daily heat absorption and annual net heat accumulation on the top of embankment The results showed that the heat absorptions on the top of embankments of the G-OHIS and G+R-OHIS in summer decreased by 9.9% and 23.2% respectively. The annual net heat accumulation on the top of embankment decreased by 6.2% for the G-OHIS and 37.9% for the G+R-OHIS. Moreover, the summertime mean daily temperatures on the top of embankments of the G-OHIS and G+R-OHIS reduced by 0.74 degrees C and 1.66 degrees C respectively. The annual temperature difference on the top of embankment reduced by 1.07 degrees C for the G-OHIS and 1.96 degrees C for the G+R-OHIS. The effectiveness of the G-OHIS in reducing pavement temperature was validated by an indoor irradiation test. It is expected to reduce permafrost thawing and other pavement distresses caused by permafrost thawing by controlling an oriented heat transfer in asphalt pavement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种通过控制沥青路面定向传热来减少多年冻土路堤中热量积聚的新方法。两种高度定向的热诱导结构,分别称为G-OHIS(仅梯度导热率)和G + R-OHIS结合夏季夏季日热吸收量和路堤顶部年净热量积蓄两个指标,设计了梯度热导率和热反射层相结合的方法。结果表明,G-OHIS和路堤顶部路堤顶部的吸热量夏季G + R-OHIS分别下降9.9%和23.2%。 G-OHIS的路堤顶部的年净热量累积下降了6.2%,G + R-OHIS的年净热量累积下降了37.9%。此外,G-OHIS和G + R-OHIS路堤顶部的夏季平均日气温分别降低了0.74摄氏度和1.66摄氏度。对于G-OHIS,路堤顶部的年温差降低了1.07摄氏度,对于G + R-OHIS,则降低了1.96摄氏度。通过室内辐照试验验证了G-OHIS在降低路面温度方面的有效性。通过控制沥青路面的定向传热,有望减少由于多年冻土融化引起的多年冻土融化和其他路面困扰。 (C)2016 Elsevier Ltd.保留所有权利。

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