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Complex Optimization of Heavy Duty Asphalt Pavement Types in\ud DURABROADS Project

机译:公路沥青路面类型的复杂优化 DURABROADS项目

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摘要

DURABROADS, an EU FP7 financed project launched in 2013, and led by the University of Cantabria (Spain) aims at providing a sustainable growth through the development of innovative, cost-effective and more durable pavements. The new generation of pavement is based on innovative eco-friendly nanotechnology-enhanced asphalts as well on the optimization of procedures to build and rehabilitate durable, safer and greener road infrastructure more adapted to climate change and freight corridor traffic loads. One of the objectives of this project is to identify and evaluate the existing constraints concerning currently used road materials of heavily trafficked roads (TEN-T routes) to withstand current road challenges. Due to different traffic and climate features, four European regions (Northern, Central, Western and Southern Europe) were differentiated. The climate change elements critical to various road types were identified, reviewing the pavement deterioration forms they accelerate. The traffic loads on freight corridors were evaluated considering their accelerated pavement deterioration forms. The synergistic effect of extreme climatic and mechanical loads to pavement surface was scrutinised. A comprehensive quantification methodology for extreme traffic and climatic load combinations was suggested including technical (functional), economic, environmental and social-human aspects with appropriate weighing. Then the European region-specific ?optimal? asphalt wearing course types and road rehabilitation techniques for TEN-T routes were identified. The region-specific material and procedure optimization utilizes ? in addition to the processing of a comprehensive literature survey ? the answers coming from 81 experts of 52 European institutions to targeted questionnaire. These data were used to develop a decision support model based on AHP and TOPSIS models to facilitate the selection of asphalt pavement types. The results suggested Stone Mastic Asphalt (SMA) as the most suitable alternative in different climate change scenarios evaluated by a sensitivity analysis.
机译:DURABROADS是欧盟FP7资助的项目,于2013年启动,由坎塔布里亚大学(西班牙)领导,旨在通过开发创新,更具成本效益和更耐用的人行道来实现可持续发展。新一代人行道以创新的环保纳米技术增强沥青为基础,并基于优化程序来建造和修复更适应气候变化和货运走廊交通负荷的耐用,安全和绿色道路基础设施。该项目的目标之一是识别和评估有关当前使用的交通繁忙道路(TEN-T路线)道路材料的限制条件,以应对当前的道路挑战。由于交通和气候特征的不同,四个欧洲地区(北欧,中欧,西欧和南欧)有所不同。确定了对各种道路类型至关重要的气候变化要素,并审查了它们加速的路面劣化形式。评估货运走廊的交通负荷时考虑其加速的路面劣化形式。仔细研究了极端气候和机械载荷对路面的协同作用。提出了一种针对极端交通和气候负荷组合的综合量化方法,包括适当权重的技术(功能),经济,环境和社会人文方面。那么欧洲特定于地区的“最优”?确定了TEN-T路线的沥青磨损过程类型和道路修复技术。特定于区域的材料和程序优化利用?除了处理全面的文献调查外?来自52个欧洲机构的81位专家针对有针对性的问卷回答了这些问题。这些数据被用来开发基于AHP和TOPSIS模型的决策支持模型,以帮助选择沥青路面类型。结果表明,通过敏感性分析评估,石塑沥青(SMA)是在不同气候变化情况下最合适的替代品。

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