Review on application of phase change materials in asphalt pavement

IF 7.4 2区 工程技术 Q1 ENGINEERING, CIVIL
Xiaoqing Wang , Biao Ma , Siqi Li , Wei Si , Kun Wei , Hongfei Zhang , Xueyan Zhou , Yunfeng Fang , Xingxiang Kang , Wenshuo Shi
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引用次数: 3

Abstract

Phase change materials (PCMs) can regulate the temperature in asphalt pavement and minimize temperature-related problems, such as rutting and thermal cracking, because of their ability to store and release latent heat. Suitable PCMs can also enable additional road surface functions, such as snow melting ability, freeze-thaw cycle resistance, and heat island reduction. These functions are helpful in achieving intelligent, green, and sustainable transportation systems. Although the research on PCMs for asphalt pavement has been carried out for more than 10 years, a systematic material system and mature application technology have not yet been formed. The main reasons for restricting the development of this technology include the lack of suitability between the PCMs and asphalt pavement, the quantitative characterization of phase change temperature regulation property, and the evaluation of the effect of phase change energy storage on improving pavement performance. Although the published review has made a comprehensive summary of the existing research, it has yet to identify the key restricting the development of this technology and carry out a review and discussion based on it. To grasp the development status of the application of PCMs in asphalt pavement, sort out the development needs and break through the technical barriers, this study systematically summarizes the preparation and performance of PCMs for asphalt pavement, compares the performance and evaluation methods of asphalt mixtures with different PCMs, and summarizes the numerical simulation methods of phase change asphalt mixtures. Finally, this study presents potential approaches to address critical technical issues and discusses possible future research.

相变材料在沥青路面中的应用综述
相变材料(PCM)具有储存和释放潜热的能力,可以调节沥青路面的温度,并最大限度地减少与温度相关的问题,如车辙和热开裂。合适的PCM还可以实现额外的路面功能,如融雪能力、抗冻融循环能力和减少热岛效应。这些功能有助于实现智能、绿色和可持续的交通系统。尽管沥青路面相变材料的研究已经进行了十多年,但尚未形成系统的材料体系和成熟的应用技术。制约该技术发展的主要原因包括相变材料与沥青路面之间缺乏适应性,相变温度调节性能的定量表征,以及相变储能对改善路面性能的效果评价。虽然已发表的综述对现有研究进行了全面总结,但尚未确定制约该技术发展的关键,并在此基础上进行综述和讨论,本研究系统地总结了沥青路面用相变材料的制备和性能,比较了不同相变材料的沥青混合料性能和评价方法,总结了相变沥青混合料的数值模拟方法。最后,本研究提出了解决关键技术问题的潜在方法,并讨论了未来可能的研究。
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
13.60
自引率
6.30%
发文量
402
审稿时长
15 weeks
期刊介绍: The Journal of Traffic and Transportation Engineering (English Edition) serves as a renowned academic platform facilitating the exchange and exploration of innovative ideas in the realm of transportation. Our journal aims to foster theoretical and experimental research in transportation and welcomes the submission of exceptional peer-reviewed papers on engineering, planning, management, and information technology. We are dedicated to expediting the peer review process and ensuring timely publication of top-notch research in this field.
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