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A finite element benchmark study based on experimental modeling of vibratory pile driving in saturated sand

机译:基于饱和砂振动桩试验实验建模的有限元基准研究

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摘要

The present study reports the approach and extensive results of FE back-calculations of model tests on vibratory pile installation in saturated sand. The model tests represent a half model setup with a half-pile driven into the soil body along an observation window. Due to this test setup, the soil displacements in vicinity to the penetrating pile have been successfully evaluated by application of high-frequency image recording and Digital Image Correlation (DIC) techniques. Additionally, an extensive instrumentation has enabled the measurement of pile motion, penetration resistance and pore water pressure during the penetration process. An axisymmetric model which incorporates the pile-oscillator system in contact with the soil has been developed in the FE-software ABAQUOTANDARD for the simulation of the tests. The dynamic analysis of water-saturated soil is based on a u-p formulation using a user-defined element. A hypoplastic constitutive model with intergranular strain has been selected to describe the mechanical behavior of the soil. The various comparison opportunities establish a comprehensive and quantitative validation benchmark of the numerical calculations. The generally good agreement between the results confirms that the pile installation process can be satisfactory reproduced numerically.
机译:本研究报告了饱和砂中振动桩安装模型试验的方法和广泛的结果。模型测试代表半模型设置,半桩沿着观察窗口驱动到土壤身体。由于该测试设置,通过应用高频图像记录和数字图像相关(DIC)技术,已经成功地评估了附近的土壤位移。另外,在穿透过程中,广泛的仪器使桩运动,渗透率和孔隙水压力的测量能够。在FE-Software Abaquotandard中开发了一种轴对称模型,其与土壤接触与土壤接触的轴振荡器系统进行了模拟测试。水饱和土的动态分析基于使用用户定义的元件的U-P配方。已经选择了具有晶间菌株的复杂组成型模型来描述土壤的力学行为。各种比较机会建立了数值计算的全面和定量验证基准。结果之间一般良好的一致性确认桩安装过程可以令人满意地复制。

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