山区高陡边坡桥梁桩基变形与受力研究

Mingyue Zhang, Hao Luo
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摘要

随着我国经济的快速发展,对基础设施建设的需求也越来越大。然而,在中国的大部分地区,地形是山地和丘陵。有些项目必须建在陡峭的斜坡上。在高陡坡上选择高架桥或半桥,不仅有利于保护周围环境,而且有利于边坡的稳定。桥梁通常选择桩基础-高墩式桥梁的形式。本文采用数值模拟的方法对桥梁桩基础的坡段进行了研究和分析。依托工程实际,利用有限元软件abaquus6.14建立三维有限元模型,研究竖向荷载、水平荷载和倾斜荷载作用下桩基的承载机理和力学特性,探讨桩周土体性质和桩体刚度对坡段桥梁桩基变形和内力的影响。分析结果表明,水平荷载对桩的水平位移影响较大,但对桩的竖向位移影响较小,竖向荷载则相反。倾斜荷载具有明显的“p-Δ”效应。土体弹性模量和桩刚度的增加会使桩基础的位移减小,但达到一定范围后,桩基础的位移趋于稳定。因此,在实际工程中,如果桩基础的位移不能满足要求,可以适当增加土的硬度和桩的刚度,但不能盲目增加。
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Research on Deformation and Force of Bridge Pile Foundation on High and Steep Slope in Mountainous Area
With the rapid development of my country’s economy, the demand for infrastructure construction is also increasing. However, in most areas of China, the terrains are mountainous and hilly. Some projects have to be built on steep slopes. Choosing viaducts or half-bridges on high-steep slopes is not only conducive to the protection of the surrounding environment, but also conducive to the stability of the slope. Bridges usually choose the form of pile foundation-high pier bridge. This paper uses numerical simulation to study and analyze the bridge pile foundation of the slope section. Relying on actual engineering, use the finite element software ABAQUS6.14 to establish a three-dimensional finite element model to study the bearing mechanism and mechanical characteristics of the pile foundation under vertical load, horizontal load and inclined load, discuss the influence of the nature of the soil around the pile and the stiffness of the pile body on the deformation and internal force of the bridge pile foundation in the slope section. The analysis results show that the horizontal load has a great influence on the horizontal displacement of the pile, but has a small influence on the vertical displacement, and the vertical load is just the opposite. Inclined load has obvious “p-Δ” effect. The increase in soil elastic modulus and pile stiffness will reduce the displacement of the pile foundation, but after reaching a certain range, the displacement of the pile foundation will tend to be stable. Therefore, in actual engineering, if the displacement of the pile foundation fails to meet the requirements, the hardness of the soil and the stiffness of the pile can be appropriately increased, but not blindly.
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