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Studying Bump at Bridge Approach of Short Subgrade with Oblique Prestressed Concrete Overlaying Asphalt Layer

机译:用斜预应力混凝土覆盖沥青层的简短路基桥梁桥梁研究

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The differential settlement of short subgrade between two highway structures (bridges, tunnels, culverts, etc.) is significantly greater than that of the other subgrade for the insufficient compaction of short subgrade owing to limited construction site. This paper aims to establish the control criteria to prevent bump at bridge approach for differential settlement of short subgrade with oblique prestressed concrete overlying asphalt layer (AC?+?OPC) composite pavement. In this work, the short subgrade and AC?+?OPC composite pavement were defined. Meanwhile, the driving comfort was analysed and the control criteria for differential settlement of short subgrade with different lengths were obtained based on the driving comfort using the driving comfort test. Finally, the effects of different layer parameters on stress and deflection were investigated and the control criteria for differential settlement of short subgrade were established based on the void area beneath the slab using the finite element software ANSYS. Results show that the length of short subgrade between two highway structures is defined to be less than 200?m. The vehicle speed and longitudinal slope have significant effects on the vertical acceleration. The asphalt layer modulus, OPC layer thickness and modulus, base layer thickness and modulus, and foundation modulus have effects on the flexural stress and deflection, especially the OPC layer thickness. The relationship between the additional stress and void area beneath the slab is derived. In addition, the control criteria for differential settlement of short subgrade with different lengths are put forward based on the void area beneath the slab and driving comfort. The application of AC?+?OPC composite pavement can prevent bump at bridge approach of short subgrade effectively. The results of this paper can provide guidance for the application of AC?+?OPC composite pavement.
机译:两条公路结构(桥梁,隧道,涵洞等)之间的差动沉降显着大于其他路基,由于施工现场有限的施工现场的短路基压实不足。本文旨在建立控制标准,以防止桥接方法的桥接方法,倾斜预应力混凝土覆盖沥青层(AC?+ opc)复合路面。在这项工作中,定义了简短的路基和AC?+?OPC复合路面。同时,分析了驾驶舒适性,基于使用驾驶舒适测试的驾驶舒适度获得了具有不同长度的短路基的差动沉降的控制标准。最后,研究了不同层参数对应力和偏转的影响,并且使用有限元软件ANSYS基于板块下方的空隙区域建立了短路基地面的差速沉降的控制标准。结果表明,两个公路结构之间的短路基的长度定义为小于200?m。车速和纵向斜率对垂直加速度具有显着影响。沥青层模量,OPC层厚度和模量,基层厚度和模量,以及基础模量对弯曲应力和偏转产生影响,尤其是OPC层厚度。推导了板块下方附加应力和空隙区域之间的关系。此外,基于板块下方的空隙区域和驾驶舒适度,提出了具有不同长度的短路基的差动沉降的控制标准。 AC?+ + opc复合网页的应用可以有效地防止桥接路基的桥梁方法。本文的结果可以为AC的应用提供指导→OPC复合网页。

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