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Full-Depth In-Place Recycling and Road Strengthening Systems for Low-Volume Roads: Highway No. 19 Case Study

机译:用于低批量道路的全深度地置回收和道路加强系统:高速公路19号案例研究

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The province of Saskatchewan has the highest number of public roads per capita in Canada, totaling approximately 198,700 km. The Saskatchewan Department of Highways and Transportation manages approximately 26,100 km of these public roads. As with most public road agencies, the department has limited resources for managing this relatively large network of low-volume roads and therefore continually strives to research and implement more cost-effective and technically feasible solutions. Of particular concern are approximately 7,500 km of thin membrane surface (TMS) roads that are undergoing accelerated damage as truck traffic and loading increase. Although conventional TMS upgrading strategies are normally effective, there are potentially significant benefits to be gained with implementation of more cost-effective methods of road strengthening. Systems include granular soil strengthening and applications of different cement products, lime, various grades of fly ash, geotextiles, geqgrids, natural and manufactured fibers, emulsified bitumen, tall oil, lignin, foamed bitumen, and synthetic ionic and cationic chemicals. Since 1999, in conjunction with Pavement Scientific International and in cooperation with the University of Saskatchewan and product suppliers, the department has constructed pilot projects on Highway No. 19 to identify, develop, and implement more cost-effective strengthening systems. The primary research objective is to investigate alternative road construction systems that will improve the load-carrying capacity and environmental durability of Saskatchewan TMS roads. Improved mechanistic engineering methods played a part in this initiative, and pilot project performance was monitored.
机译:萨斯喀彻温省拥有加拿大人均公共道路数量最多,总计约198,700公里。萨斯喀彻温省高速公路和运输部门管理这些公共道路约26,100公里。与大多数公共道路机构一样,该部门拥有管理这一相对较大的低批量道路网络的资源有限,因此不断努力研究和实施更具成本效益和技术上可行的解决方案。特别关注的是大约7,500公里的薄膜表面(TMS)道路,经历加速损坏作为卡车交通和装载增加。虽然传统的TMS升级策略通常有效,但在实施更具成本效益的道路加强方法方面存在潜在的显着益处。系统包括粒状土壤强化和不同水泥产品的应用,石灰,各种粉煤灰,土工织物,Geqgrids,天然和制造纤维,乳化沥青,高油,木质素,泡沫沥青和合成离子和阳离子化学品。自1999年以来,与路面科学国际与与萨斯喀彻温省大学和产品供应商合作,该部门建造了19号公路的试点项目,以确定,发展和实施更具成本效益的加强系统。初级研究目标是调查替代道路建设系统,该系统将提高萨斯喀彻温省TMS道路的承载能力和环境耐久性。改进的机械工程方法在这一举措中发挥了一部分,并监测试点项目性能。

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