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Dynamic soil-pile interactions for machine foundations

机译:机器基础的动态土-桩相互作用

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To achieve the satisfactory performance of a machine foundation, the dynamic amplitude should be limited to a few micrometres. In using piles for the foundation, the interaction of the pile with the surrounding soils under vibratory loading will modify the pile stiffness and will generate damping. The results of a three-dimensional, finite element model of a soil-pile system with viscous boundaries were used to determine the dynamic stiffness and damping generated by soil-pile interactions for a single vertical pile subjected to a vertical harmonic loading at the pile head. The pile was embedded in a linearly elastic, homogeneous soil layer with material damping of the hysteretic type. A parametric study was undertaken to investigate the influence of the major factors of the soil-pile system that affect the vertical vibration characteristics of the pile response. These were found to include the dimensionless frequency, a_o, soil properties, pile properties, and length and axial load on the pile head. Equations were developed to determine the range of such influence. Two general equations that include all of these parameters and can be used to approximate the stiffness and damping of the pile were developed so that a finite element analysis does not have to be made in every case.
机译:为了获得令人满意的机器基础性能,动态振幅应限制在几微米以内。在使用桩作为基础时,在振动荷载作用下桩与周围土壤的相互作用将改变桩的刚度并产生阻尼。使用具有粘性边界的土桩系统的三维有限元模型的结果来确定在桩头处承受竖向谐波载荷的单个竖桩的动力刚度和土-桩相互作用产生的阻尼。桩被埋入线性弹性,均质的土壤层中,并具有滞后类型的材料阻尼。进行了参数研究,以研究影响桩响应的竖向振动特性的土桩系统的主要因素的影响。发现这些因素包括无因次频率,a_o,土壤特性,桩特性以及桩头上的长度和轴向载荷。开发方程式以确定这种影响的范围。开发了两个包含所有这些参数并且可以用来近似计算桩的刚度和阻尼的通用方程,因此不必在每种情况下都进行有限元分析。

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