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Full-Scale Structural Testing of Permeable Interlocking Concrete Pavement to Develop Design Guidelines

机译:透水互锁混凝土路面的全尺寸结构试验,以制定设计准则

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This paper summarizes research conducted to revise existing pavement thickness design tables for permeable interlocking concrete pavement (PICP) published by the Interlocking Concrete Pavement Institute (ICPI) in 2011. The study included a literature review, field deflection testing of existing projects and test sections, estimation of the effective stiffness of each layer in PICP structures, mechanistic analysis and structural design of a test track incorporating three different subbase thicknesses (low, medium, and higher risk), tests on the track with a Heavy Vehicle Simulator (HVS) to collect performance data to validate the design approach using accelerated loading, refinement and calibration of the design procedure using the test track data, development of a spreadsheet based design tool, and development of revised design tables using the design tool. Rut development rate as a function of the shear stress to shear strength ratios at the top of the subbase and the top of the subgrade was used as the basis for the design approach. The revised design tables are based on subgrade soil properties, subbase aggregate properties, the number of 80 kN standard axle loads, and the number of days with standing water in the subbase. The minimum design thicknesses required to prevent subgrade rutting in the revised tables do not differ significantly from those in the 2011 ICPI publication, and are mostly less conservative.
机译:本文总结了为修订现有互锁混凝土路面研究所(ICPI)在2011年发布的用于渗透性互锁混凝土路面(PICP)的路面厚度设计表而进行的研究。该研究包括文献综述,现有项目的现场挠度测试和测试部分,估算PICP结构中每一层的有效刚度,对包含三种不同基底厚度(低,中和较高风险)的测试轨道进行机械分析和结构设计,并使用重型车辆模拟器(HVS)在轨道上进行测试性能数据,以通过加速加载来验证设计方法,使用测试跟踪数据对设计过程进行优化和校准,开发基于电子表格的设计工具以及使用设计工具来开发修改后的设计表。车辙的发展速度是基层顶部和路基顶部的剪切应力与剪切强度之比的函数,被用作设计方法的基础。修改后的设计表基于路基的土壤特性,路基的骨料特性,80 kN标准轴重的数量以及路基中积水的天数。防止修订表中路基车辙的最小设计厚度与2011年ICPI出版物中的最小厚度没有显着差异,并且大多数情况下不太保守。

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