Pavement energy harvesting technologies: a critical review

Q2 Engineering
D. Vizzari, E. Gennesseaux, Stéphane Lavaud, Stéphane Bouron, E. Chailleux
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引用次数: 15

Abstract

The world energy consumption is constantly increasing and the research point towards novel energy harvesting technologies. In the field of pavement engineering, the exploitable sources are the solar radiation and the vehicle load. At present, these systems are able to convert the sunlight into electricity thanks to some solar cells placed under a semi-transparent layer (photovoltaic roads), or they can harvest thermal heat by means of solar thermal systems. The thermal gradient of the pavement can be exploited by thermoelectric generators, by heat pipes or by heat-transfer fluids (i.e. water) pumped into a medium (asphalt solar collectors, porous layer or air conduits). The traffic load can be exploited by piezoelectric materials, able to convert the vehicle load into an electrical charge. The aim of this paper is to describe the main pavement energy harvesting technologies, pointing out positives and negatives and providing indications for further optimizations. Finally, the systems are compared in terms of initial cost, electrical output, efficiency and technology readiness level.
路面能量收集技术综述
世界能源消耗不断增加,新的能源收集技术成为研究的热点。在路面工程领域,可利用的辐射源是太阳辐射和车辆荷载。目前,这些系统能够将阳光转化为电能,这要归功于放置在半透明层(光伏道路)下的一些太阳能电池,或者它们可以通过太阳能热系统收集热能。路面的热梯度可以通过热电发电机、热管或将传热流体(即水)泵入介质(沥青太阳能收集器、多孔层或空气导管)来利用。压电材料可以利用交通载荷,将车辆载荷转化为电荷。本文的目的是描述主要的路面能量收集技术,指出其优点和缺点,并为进一步优化提供指示。最后,从初始成本、电力输出、效率和技术就绪水平等方面对系统进行了比较。
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
RILEM Technical Letters
RILEM Technical Letters Materials Science-Materials Science (all)
CiteScore
5.00
自引率
0.00%
发文量
13
审稿时长
10 weeks
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