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Experimental investigation of the seismic performance of bridge models with conventional and rocking pile group foundations

机译:常规群桩基础桥梁模型抗震性能的试验研究。

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This experimental study assesses the seismic performance of a rocking pile group foundation system for bridges. Two large-scale mass-column-foundation bridge models with a rocking pile group foundation and a conventional foundation were designed, constructed, and tested under quasi-static cyclic loading. An effective pile model with a short pile length and an additional end plate was proposed that provided approximate foundation flexibility and pile responses. Special consideration was taken for the pile-to-cap connection details. The test results show that the model with the rocking foundation led to similar hysteretic cycles compared to those with the conventional foundation at small lateral loading (e.g. functional load), while at large cyclic drift ratios (e.g. induced by strong earthquakes), flag-shaped hysteretic loops and excellent resilient capability were achieved. Compared to the conventional foundation, the rocking foundation resulted in much less damage in the piles, decreased the residual drift ratio by up to 88%, and retained nearly 60% of the initial stiffness following a maximum drift cycle of 6%. The traditional definition of stiffness degradation based on the secant stiffness that corresponds to the peak forces and displacements for each loading cycle was found unsuitable for evaluating the residual stiffness of resilient structures. A new index was then proposed, based on the secant stiffness that corresponds to the critical functional load.
机译:这项实验研究评估了桥梁的摇桩群基础系统的抗震性能。在准静态循环荷载作用下,设计,建造和测试了两种具有摇摆桩基基础和常规基础的大型质量柱基础桥梁模型。提出了一种有效的桩长度短,附加端板有效的桩模型,该模型可提供近似的地基柔性和桩响应。桩帽连接细节特别考虑。测试结果表明,与传统基础相比,具有摇摆基础的模型在较小的侧向荷载(例如功能荷载)下具有相似的滞后循环,而在较大的周期性漂移率(例如由强地震引起)下呈旗状磁滞回线和出色的回弹能力得以实现。与传统的地基相比,摇摆式地基对桩的破坏要小得多,最大可将残余漂移率降低88%,并在最大6%的漂移周期后保留了近60%的初始刚度。发现基于割线刚度的刚度退化的传统定义不适合评估弹性结构的剩余刚度,割线刚度对应于每个加载周期的峰值力和位移。然后根据与临界功能负荷相对应的割线刚度,提出了一个新指标。

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