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Dynamic analysis for laterally loaded piles and dynamic p-y curves

机译:侧向受力桩的动力分析和动态p-y曲线

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Pile foundations are often subjected to lateral dynamic loading due to forces on the supported structure. In this study, a simple two-dimensional analysis was developed to accurately model the pile response to dynamic loads. The proposed model incorporates the static p-y curve approach (where p is the static soil reaction and y is the pile deflection) and the plane strain assumptions to represent the soil reactions within the frame of a Winkler model. The p-y curves are used to relate pile deflections to the nonlinear soil reactions. Wave propagation and energy dissipation are also accounted for along with discontinuity conditions at the pile-soil interface. The inclusion of damping with the static unit transfer curves results in increased soil resistance, thus producing "dynamic p-y curves." The dynamic p-y curves are a function of the static p-y curve and velocity of the soil particles at a given depth and frequency of loading. The proposed model was used to analyze the pile response to the lateral Statnamic load test, and the predicted response compared well with the measured response. Closed-form solutions for dynamic p-y curves were established by curve fitting the dynamic soil reactions for a range of soil types and loading frequencies. These solutions can be used to model soil reactions for pile vibration problems in readily available finite element analysis (FEA) and dynamic structural analysis packages. A simple spring and dashpot model was also proposed to be used in equivalent linear analyses of transient pile response. The proposed models were incorporated into an FEA program (ANSYS) which was used to compute the response of a laterally loaded pile. The computed responses compared well with the predictions of the two-dimensional analysis. [References: 22]
机译:由于受支撑结构上的力,桩基经常承受横向动态载荷。在这项研究中,开发了一个简单的二维分析来准确地模拟桩对动态载荷的响应。提出的模型结合了静态p-y曲线方法(其中p是静态土体反作用力,y是桩体挠度)和平面应变假设来代表Winkler模型框架内的土体反作用力。 p-y曲线用于将桩的挠度与非线性土壤反应联系起来。波传播和能量消散以及桩-土界面处的不连续条件也被考虑在内。静态单位传递曲线包含阻尼会导致增加的土壤阻力,从而产生“动态p-y曲线”。动态p-y曲线是静态p-y曲线和给定深度和加载频率下土壤颗粒速度的函数。所提出的模型被用来分析桩对横向静态荷载试验的响应,并将预测响应与实测响应进行比较。通过对一系列土壤类型和荷载频率的动态土壤反应进行曲线拟合,建立了动态​​p-y曲线的闭式解。这些解决方案可用于现成的有限元分析(FEA)和动态结构分析软件包中的桩振动问题的土壤反应模型。还提出了一个简单的弹簧和阻尼模型,用于瞬态桩响应的等效线性分析。提议的模型被合并到FEA程序(ANSYS)中,该程序用于计算侧向荷载桩的响应。计算得到的响应与二维分析的预测结果很好地比较。 [参考:22]

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