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MECHANISTIC DESIGN: A MODELING CASE STUDY FOR THE CITY OF SASKATOON

机译:机械设计:萨斯卡通市的建模案例研究

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A mechanistic roadway design methodology was employed for City of Saskatoon roadways as part of a pilot study. The mechanistic design methodology included Saskatoon field state conditions of subgrade materials, changing moisture contents, and alternative road building materials. This design methodology used is comprehensive and based on regulated standards, mechanistic materials testing, and modeling. A finite element method was used to conduct a mechanistic primary response analysis to determine road design pavement structure options. This paper describes a road design case study for City of Saskatoon new subdivisions. Laboratory testing was conducted to assess the soil and aggregate material properties of sampled subgrade. Both conventional and mechanistic materials libraries were developed for subgrade and other pavement structure materials. The conventional materials library included material properties such as gradation, plasticity, and density and the mechanistic library included material properties such as dynamic modulus and Poisson's ratio. The model used these material properties as inputs and the finite element method to perform simulations and generate model outputs. For this project, the outputs were different pavement structure design options based on maximum peak surface deflections allowed. The critical vehicle loads for City of Saskatoon collector and local roads is a vehicle loaded to primary weight limits. For this new subdivision design case study, standard conventional pavement structures currently used for local roads and collector roads were modeled as a baseline and compared to alternative road structures with additional base material, a sand drainage layer, and a rock drainage layer for one subgrade type. For each resultant cross section generated by the model, the shear strains were analyzed and maximum peak surface deflections were used to assess which cross section was optimum for each subgrade type. The results of this case study showed that the mechanistic model provided feasible alternative pavement structures for City of Saskatoon local and collector roadway design. This study illustrated that using the standard pavement structures for local roads currently used by the City's design methodology may not be structurally appropriate for roads in new subdivisions with varying subgrade types.
机译:作为一项初步研究的一部分,萨斯卡通市道路采用了机械化道路设计方法。机械设计方法包括萨斯卡通路基材料的现场状态条件,不断变化的水分含量以及替代性道路建筑材料。所使用的这种设计方法是全面的,并且基于规范标准,机械材料测试和建模。使用有限元方法进行机械主要响应分析,以确定道路设计的路面结构选项。本文介绍了萨斯卡通市新分区的道路设计案例研究。进行了实验室测试,以评估所采样路基的土壤和骨料特性。常规和机械材料库均针对路基和其他路面结构材料而开发。常规材料库包含材料特性(例如渐变,可塑性和密度),而机械库包含材料特性(例如动态模量和泊松比)。该模型使用这些材料属性作为输入,并使用有限元方法执行模拟并生成模型输出。对于此项目,输出是基于允许的最大峰值表面挠度的不同路面结构设计选项。萨斯卡通市集运者和当地道路的关键车辆载荷是达到主要重量限制的车辆。在此新的细分设计案例研究中,将当前用于本地道路和收集器道路的标准常规路面结构建模为基准,并将其与具有其他基础材料,排沙层和排岩层的替代道路结构(一种路基类型)进行比较。对于由模型生成的每个结果横截面,分析了剪切应变,并使用最大峰值表面挠度来评估哪种横截面对于每种路基类型都是最佳的。该案例研究的结果表明,该机械模型为萨斯卡通市本地和收集者道路设计提供了可行的替代路面结构。这项研究表明,纽约市设计方法当前使用的本地道路标准路面结构在结构上可能不适用于路基类型各不相同的新分区中的道路。

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