Model development and prediction of anti-icing longevity of asphalt pavement with salt-storage additive

Zhang, Yan, Deng, Yong, Shi, Xianming
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引用次数: 7

Abstract

This study established a systematic simulation framework to predict the anti-icing longevity of a thin overlay of asphalt pavement with salt-storage additive (APSSA). The water and chloride transport in the overlay when subjected to varying precipitation, temperature, thermal cracking, and fatigue cracking over time were modeled using a Finite Element Method based software. The simulation included two parts: water transport followed by chloride transport. Water transport that obeys the law of conservation of mass was modeled using the phase transport in porous media (phtr) interface of COMSOL, while chloride transport based on Fick’s second law was modeled with the transport of diluted species (tds) interface. The simulation results show that the anti-icing function of a 16-mm thick overlay was fully effective in 2 years and 5 years for the minimum pavement temperature above -3.4 °C and -2.4 °C, respectively. These two pavement temperatures are equivalent to 97.4-percentile and 96.3-percentile of historical hourly pavement temperature near Pullman, Washington.
含盐添加剂沥青路面抗冰寿命模型建立与预测
本研究建立了一个系统的模拟框架,以预测盐储存添加剂(APSSA)薄加铺层沥青路面的抗冰寿命。利用基于有限元法的软件对覆盖层中水分和氯化物在不同降水、温度、热开裂和疲劳开裂条件下的运移进行了建模。模拟包括两个部分:水输运和氯输运。遵循质量守恒定律的水输运采用COMSOL多孔介质中的相输运(phtr)界面进行建模,基于菲克第二定律的氯输运采用稀释物质输运(tds)界面进行建模。仿真结果表明,当路面最低温度分别高于-3.4℃和-2.4℃时,16mm厚加铺层的防冰作用在2年和5年内完全有效。这两个路面温度相当于华盛顿普尔曼附近历史每小时路面温度的97.4百分位和96.3百分位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.70
自引率
0.00%
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0
审稿时长
13 weeks
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