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Numerical Simulation for Mechanical Behavior of Asphalt Pavement with Graded Aggregate Base

机译:级配碎石基层沥青路面力学行为的数值模拟。

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The performance of asphalt pavement is determined by the combination of its material properties, road structure, and loading configurations. A DEM numerical simulation study was conducted to determine stress distribution and deformation behavior of asphalt pavement with graded aggregate base under standard traffic loading. Stress contour and displacement contour were presented via a self-made program. Compressive stress concentrated area located in both sides of wheel, while tensile stress concentrated area appeared in lower part of the asphalt layer. The traffic loading transferred downward by graded aggregate base and to both sides at the same time, and has a trend to expand gradually with increasing depth within graded aggregate base. Therefore, stress was well distributed in the subgrade soil layer with a great action scope, and the value decreased obviously because of the stress dispersion of graded aggregate base. Vertical displacement was the main displacement of the asphalt layer, and on the both sides of traffic loading, displacement was downward and inclined slightly to the central of loading. Vertical and horizontal deformations included in both graded aggregate base layers, and displacement extended to both sides gradually with increasing depth corresponding to stress-distribution trends. Vertical displacement was dominated in the subgrade soil layer which was relatively small.
机译:沥青路面的性能取决于其材料特性,道路结构和荷载配置。进行了DEM数值模拟研究,确定了在标准交通荷载下具有渐变集料基础的沥青路面的应力分布和变形行为。应力等高线和位移等高线通过自制程序显示。压应力集中区位于车轮两侧,而拉应力集中区位于沥青层的下部。交通负荷同时通过分级集料库向下传递至两侧,并随着分级集料库内深度的增加而逐渐扩展。因此,应力分布在路基土层中,作用范围较大,且由于梯度集料基层的应力分散,应力值明显降低。垂直位移是沥青层的主要位移,在行车荷载的两侧,位移是向下的,并稍微向荷载中心倾斜。垂直和水平变形都包括在两个渐变骨料基层中,并且位移随着深度的增加而逐渐扩展到两侧,这与应力分布趋势相对应。在较小的路基土层中,垂直位移占主导地位。

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