基于深度的柔性路面挠度软件评价(以吉马至色卡路为例)

Tarekegn Kumela
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引用次数: 3

摘要

埃塞俄比亚对道路建设的需求日益增长,以满足其中长期发展规划。道路从这个国家的首都向四面八方延伸。本研究的目的是利用软件评估沿Jimma至Seka路段的柔性路面偏斜与路面深度的关系,并将实验室结果与埃塞俄比亚道路管理局(ERA)标准进行比较。恒应力软件(ESS)是一种获取路面层挠度的数值分析技术。本研究的方法是发现道路参数(尺寸、层厚度、弹性模量、泊松比、载荷和压力)在减少由垂直表面挠度引起的沥青路面疲劳开裂和车辙破坏的主要原因、沥青层底部的临界拉伸应变和路基顶部的临界压应变方面的敏感性。采用的分析方法是在得到各层CBR结果后,以路面材料的弹性模量和泊松比作为设计参数。期望输出结果表明,沥青路面的位移或挠度(u z)高达0.38mm,并随着路面厚度的增加而逐渐减小。较大的挠度值表明应力过大,导致路面由于疲劳或累积的塑性变形而出现裂缝和变形。因此,路面层的相对挠度随路面深度的增加而减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Flexible Pavement Deflections with Respect to Pavement Depths Using Software (A Case Study Jimma to Seka Road)
Road building in Ethiopia is increasingly in demand to meet medium and long terms development programs. Roads are constructed radiating from the capital city of the country in all direction. The objective of this research study is to evaluate the flexible pavement deflections with respect to pavement depth using Software along Jimma to Seka road segment and compare the laboratory results with the Ethiopian Road Authority (ERA) standards. Ever Stress Software (ESS) is a numerical analysis technique to obtain the deflection of pavement layers. The methodology of this research was finding the sensitivity of the road parameters (dimension, layers thickness, elastic modulus, Poisson’s ratio, loads and pressures) in reducing the major causes of failure in asphalt pavement fatigue cracking and rutting due to vertical surface deflections, the critical tensile strains at the bottom of the asphalt layer and the critical compressive strains on the top of subgrade. The analytical method used was the elastic modulus and Poisson’s ratio of the pavement materials as design parameters after CBR results of each layers was obtained. The expected outputs have shown that the displacement or deflection (u z ) was as high as 0.38mm in the asphalt surface and gradually decreased as the pavement thickness increased. Large values of deflections indicates an over stressed condition which results in the pavement surface to crack and distortion as a results of fatigue or accumulated plastic deformation. Therefore, the relative deflection of pavement layer decreases as the pavement depth increases.
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