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P-y Curves of 2x2 pile group in liquefiable soil under dynamic loadings

机译:动态载荷下液化土2x2桩基曲线P-Y曲线

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The seismic analysis of pile groups subjected to lateral and axial loads is often implemented separately. As a result, the calculated bending moment and deflection are found to be nonrealistic in nature, as compared with conditions where a combined analysis is carried out. In reality combined loadings are encountered in almost all situations and the occurrence of pure loadings (either lateral or vertical) is either nonexistent or scarce. In the present study, the numerical analysis of a 2 x 2 pile group under the action of combined loadings (lateral load, vertical load, and seismic ground motions) and embedded in a layered soil is carried out using the FLAC3D computer program. The liquefiable soil layer is modeled using the Mohr-Coulomb with Byrne constitutive model, while the non-liquefiable soil layers are modeled with the conventional Mohr-Coulomb constitutive model. The pile group is considered an elastic model. The proposed numerical model is validated with the existing dynamic centrifuge test results and good agreement between the results is observed. Finally the dynamic P-y (P denotes the lateral load applied at the pile cap and y is the lateral pile group deflection at the pile head) curves are generated for different combinations of vertical load, lateral load, and input seismic ground motions in liquefiable and non-liquefiable soil. It is observed that for a constant vertical load (V) having a magnitude equal to 0.50 times the ultimate pile load capacity (0.50V(ult)), the pile group deflection increases by 36% when the lateral load increases from 300 to 900 kN, while the increase is by 48.5% for V = V-ult and for the same increase in the lateral load. Similarly 2001 Bhuj and 2011 Sikkim motions caused an amplification of deflection by 8.4 and 9 times, respectively. The influence of vertical loads increases the pile head displacement and should be considered for determining the dynamic P-y curves. The proposed dynamic P-y curves will be beneficial to geotechnical engineers for understanding the qualitative response of pile groups under combined loading conditions.
机译:经受横向和轴向载荷的桩基的地震分析通常是单独实施的。结果,与进行组合分析的条件相比,发现计算的弯矩和偏转在于进行了组合分析的条件。在现实中,在几乎所有情况下都遇到了联合负载,并且纯载荷的发生(横向或垂直)是不存在的或稀缺的。在本研究中,使用FLAC3D计算机程序进行组合载荷(横向载荷,垂直载荷和地震研磨)和嵌入层状土壤中的2×2桩基的数值分析。使用MoHR-Coulomb与Byrne本构模型建模的液化土层,而非液化土层是用常规MoHR-Coulomb本构模型建模的。桩基被认为是弹性模型。所提出的数值模型通过现有的动态离心测试结果验证,观察结果之间的良好一致性。最后,动态py(p表示施加在桩帽和y处的横向载荷,是桩头处的横向桩组偏转),为不同的垂直载荷,横向载荷的不同组合产生曲线,并输入液化和非 - 水分土壤。观察到,对于恒定的垂直载荷(V),其幅度等于最终桩承载能力的0.50倍(0.50V(ULT)),当横向载荷从300增加到900 kN时,桩基偏转增加了36% ,虽然V = V-ULT的增加是48.5%,并且横向载荷的相同增加。同样,2001年BHUJ和2011年Sikkim Motions分别引起了8.4和9次的放大。垂直载荷的影响增加了绒毛头位移,应该考虑用于确定动态P-Y曲线。所提出的动态P-Y曲线将有利于岩土工程师,以了解在组合的装载条件下桩基的定性响应。

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