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A critical review on large-scale research prototypes and actual projects of hydronic asphalt pavement systems

机译:大规模研究原型与水性沥青路面系统实际项目的关键综述

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In recent years, harvesting solar energy as a renewable and sustainable energy source has been studied extensively across engineering fields. Having reviewed more than 50 large-scale projects of Hydronic Asphalt Pavement (HAP), this paper offers a series of findings: the range of construction cost of asphalt collector varies between 25 and 151 (sic)/m(2) and 1.760-3.000 (sic)/m(2) for the heat exchanger and the total cost. The energy harvest capacity of asphalt solar collector systems (0,6-0,8 GJ/m(2)/year) and the required amount of heat for snow melting projects (100-900 W/m(2)) vary significantly in different projects. Using grid supports for easier pipe placement and protection of pipes against heavy loads during and after construction is recommended. Pavement solar collector systems reduced carbon dioxide emissions by 8-100% in different projects by changing their source of energy from fossil fuels to renewable and sustainable sources. Moreover, in order to further evaluate the sustainability of the HAP systems, a detailed life cycle assessment is required, including all available data related to the energy performance, pavement service life, material end-of-life recycling, etc. Finally, the paper identifies the knowledge gaps requiring further research especially in the area of energy output of the HAP systems, pavement service life and life cycle assessment. (C) 2021 Elsevier Ltd. All rights reserved.
机译:近年来,在工程领域已经广泛研究了作为可再生和可持续能源的太阳能作为可再生能源和可持续的能源。本文审查了50多个水性沥青路面(HAP)的大型项目,提供了一系列调查结果:沥青收集器的施工成本范围在25到151(SiC)/ m(2)之间变化,1.760-3.000 (SiC)/ M(2)用于热交换器和总成本。沥青太阳能收集器系统的能量收购能力(0,6-0,8 GJ / M(2)/年)和雪熔化项目所需的热量(100-900 w / m(2))差异显着变化不同的项目。建议使用电网支撑件,建议在施工期间和之后使用电网放置和管道保护。路面太阳能收集器系统通过将化石燃料的能量源改变为可再生和可持续来源,将二氧化碳排放量减少8-100%。此外,为了进一步评估HAP系统的可持续性,需要详细的生命周期评估,包括与能源性能,路面使用寿命,材料寿命循环循环等的所有可用数据最终,本文确定需要进一步研究的知识间隙,特别是在HAP系统的能量输出领域,路面使用寿命和生命周期评估。 (c)2021 elestvier有限公司保留所有权利。

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