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Development of a sustainable transportation infrastructure management system for a typical college campus.

机译:为典型的大学校园开发可持续的交通基础设施管理系统。

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摘要

An attempt was made to develop a sustainable Transportation Infrastructure Management System (TIMS) for a typical college campus and/or any low volume road network. First, a sustainable Pavement Management System (PMS) was developed using different Maintenance and Rehabilitation (M&R) techniques. MicroPAVER(TM) PMS software was utilized to analyze the present condition and to predict the future condition of pavement for the University of Rhode Island (URI) Kingston campus. Economic analysis was performed using the default rates of MicroPAVER(TM) for different M&R policies and compared with the ones used in one of typical municipalities, i.e., The City of Cranston, Rhode Island (RI).;Secondly, model input parameters were formulated for the American Association of State Highway and Transportation Officials (AASHTO) Mechanistic-Empirical Pavement Design Guide (MEPDG) to use in RI, because having a strong initial pavement is essential for sustainable PMS. Superpave specifications were used to generate material parameters to design the Upper College Road as a model pavement structure. Then energy efficient and environment friendly M&R strategies were explored to introduce into the developed PMS, i.e., Cold In-Place Recycling (CIR) and Warm Mix Asphalt (WMA). A series of tests were conducted to predict their performances, e.g., thermal cracking, fatigue cracking and permanent deformation or rutting. Finally, a Geographic Information System (GIS) was used as a tool for automated drafting and data storage. Maps generated with different color coding will assist decision makers quicker and better interpretation.;The results of the present study can be used for any pavement networks particularly with low traffic volumes, e.g., cities and towns, and also have a reasonable potential to be used by any other larger agencies, e.g., State Department of Transportation (DOT).
机译:试图为典型的大学校园和/或任何低流量道路网络开发可持续的交通基础设施管理系统(TIMS)。首先,使用不同的维护与修复(M&R)技术开发了可持续的路面管理系统(PMS)。利用MicroPAVERTM PMS软件分析了罗德岛大学(URI)金斯顿大学校园的现状,并预测了未来的人行道状况。使用MicroPAVER™的默认费率对不同的M&R政策进行了经济分析,并与典型市政当局之一(即罗德岛州克兰斯顿市(RI))中使用的比率进行了比较;其次,制定了模型输入参数供美国国家公路和运输官员协会(AASHTO)使用的机械式-经验性路面设计指南(MEPDG)在RI中使用,因为具有坚固的初始路面对于可持续的PMS至关重要。 Superpave规范用于生成材料参数,以将上部学院路设计为模型路面结构。然后探索节能和环保的M&R策略,以将其引入已开发的PMS中,即就地冷再生(CIR)和温拌沥青(WMA)。进行了一系列测试以预测其性能,例如热裂纹,疲劳裂纹和永久变​​形或车辙。最后,地理信息系统(GIS)被用作自动绘图和数据存储的工具。使用不同颜色编码生成的地图将有助于决策者更快,更好地进行解释。;本研究的结果可用于任何人行道网络,尤其是在城市和城镇等人流量少的人行道上,并且也具有合理的使用潜力由任何其他较大的机构,例如,美国运输部(DOT)。

著录项

  • 作者

    Singh, Ajay K.;

  • 作者单位

    University of Rhode Island.;

  • 授予单位 University of Rhode Island.;
  • 学科 Engineering Civil.;Sustainability.;Transportation.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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