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李强, 王奎华, 谢康和. 饱和土中端承桩纵向振动特性研究[J]. 力学学报, 2004, 36(4): 435-442. DOI: 10.6052/0459-1879-2004-4-2003-265
引用本文: 李强, 王奎华, 谢康和. 饱和土中端承桩纵向振动特性研究[J]. 力学学报, 2004, 36(4): 435-442. DOI: 10.6052/0459-1879-2004-4-2003-265
Vertical vibration of an end bearing pile embedded in saturated soil[J]. Chinese Journal of Theoretical and Applied Mechanics, 2004, 36(4): 435-442. DOI: 10.6052/0459-1879-2004-4-2003-265
Citation: Vertical vibration of an end bearing pile embedded in saturated soil[J]. Chinese Journal of Theoretical and Applied Mechanics, 2004, 36(4): 435-442. DOI: 10.6052/0459-1879-2004-4-2003-265

饱和土中端承桩纵向振动特性研究

Vertical vibration of an end bearing pile embedded in saturated soil

  • 摘要: 基于饱和多孔介质理论研究了三维轴对称条件下端承桩在饱和土中的纵向耦合振动. 首先通过引入势函数对Biot动力固结方程解耦,采用算子分解方法及分离变量法求得饱和土层振动解,进而利用桩土完全耦合条件得到桩土系统定解. 然后对桩顶的频率和时域响应进行参数研究,结果表明,桩的长径比和桩土模量比对桩顶动力响应有较大影响,而渗透力对其影响较小. 最后将幅频及时域反射波理论拟合结果与桩基实测结果加以对比,结果表明理论曲线与实测曲线规律一致.

     

    Abstract: Dynamic interaction of pile and soil plays an importantrole in structure design. Although many researches have been carried out onthe field in past two decades, the emphasis is mainly focused on pilevibration in single phase medium. Such a fact has been neglected that soilis multi-phase medium. The effects of ground water on the interaction areseldom discussed.In this paper, vertical vibration of an end bearing pile embedded in asaturated soil layer is theoretically investigated. The pile is assumed tobe vertical and can be dealt with one dimensional elastic theory. The soilis considered as a linear saturated isotropic poroelastic medium andsatisfies rigorous three dimensional poroelasticity. Potential functions areapplied to decouple governing differential equations of the soil layeroriginally presented by Biot. By virtue of differential operator splittingand variable separation method, soil vibration displacement solutions withan undetermined constant are obtained at first. Under the assumption ofperfect contact between the pile and the soil, the pile response to anarbitrary vertical load is analytically derived in a closed form. Thenharmonic complex stiffness and admittance at the pile head are defined infrequency domain. And velocity response in time domain is gained by means ofFourier inverse transform. Based on the solutions, a parametric study isconducted to determine the main features of the soil-pile interaction invertical vibration. As a result, the pile slenderness and the pile-soilmodulus ratio are major on the pile dynamic response, while the seepageforce has minor influence on the response. Finally, it is shown that thetheoretical curves are in good agreement with those obtained from fieldtest.

     

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