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Numerical simulation of pile installations in a hypoplastic framework using an SPH based method

机译:基于SPH的方法,使用SPH的软质框架桩装置数值模拟

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This paper presents a tool to estimate the stresses, and thus the expected forces, at a retaining wall by the installation of piles. The solution method is based on Smoothed Particle Hydrodynamics (SPH) and the soil is modeled using a simplified hypoplastic material law. In order to correctly compute the forces on the soil due to the contact between the pile and the soil, a formulation for imposing frictional boundary conditions using SPH is developed. Modeling the soil with the chosen hypoplastic approach also allows for tensile forces in the soil. However, these are not physical. Therefore, an alternative formulation is presented which directly eliminates unphysical tensile stresses in the cohesionless soil without any additional numerical parameters. The numerical code is firstly validated against benchmark problems. Then several test cases are simulated including monotonic and cyclic penetration of piles into the soil. A good agreement with the experimental observation is found. Additionally, the impact of pile driving in the presence of sheetpiles (retainers) is investigated to see how the pile driving can alter the applied forces on the sheet piles. The simulation of such complex geotechnical problems that involve large deformation, material nonlinearity, and moving boundary conditions demonstrates the applicability and versatility of the proposed numerical tool in this field.
机译:本文提出了一种工具来估计压力,从而通过安装桩在挡土墙处估计应力。溶液方法基于平滑的粒子流体动力学(SPH),使用简化的假置型材料法进行模拟土壤。为了正确地计算土壤上的力,由于桩和土壤之间的接触,开发了使用SPH施加摩擦边界条件的制剂。用所选择的软质型方法建模土壤也允许土壤中的拉伸力。但是,这些不是物理的。因此,提出了一种替代的制剂,其直接消除在无粘性土壤中的不透明拉伸应力,而无需任何额外的数值参数。首先验证了数值代码以防止基准问题。然后模拟几种测试用例,包括桩的单调和循环渗透到土壤中。发现了与实验观察的良好一致性。另外,研究了桩驾驶在片材(保持器)的存在下的影响,以了解桩驾驶如何改变纸桩上的施加力。这种复杂的岩土内问题的模拟涉及大变形,材料非线性和移动边界条件的应用示出了该领域所提出的数值工具的适用性和多功能性。

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