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Transverse response of pile group foundations supporting a long-span cable-stayed bridge under uniform and nonuniform excitation

机译:均匀非均匀激励下大跨度斜拉桥群桩基础的横向响应

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Multiple shaking table tests on an integral long-span cable-stayed bridge model were carried out to study the transverse response of pile group foundations. An elaborate bridge model was fabricated according to an assumed bridge with a total length of 2672 m and a geometric similarity ratio of 1/70. The superstructure of the bridge model consisted of a bridge girder, cables, two transition piers, four auxiliary piers and two pylons. The substructure of the model consisted of eight groups of piles embedded in synthetic soil. Accelerations, displacements and bending moments of the piles that supported the transition piers, auxiliary piers and pylons, respectively, were analyzed when the bridge was excited uniformly and nonuniformly in the transverse direction. The nonuniform excitation test was implemented by inputting the same motion to different shaking tables at different times. Three types of earthquake waves with different predominant frequencies were applied to the integral bridge model from low to high intensity. The test results indicated that distinct differences arose between the motions at the top of the pile groups supporting different parts of the superstructure despite the integral bridge model being subjected to uniform excitation. The large displacement difference between pile groups may be one of the origins of damage or even collapse of the superstructure. The amplification ratio of acceleration at the top of the pile group supporting the transition piers increased when the bridge model was excited by waves of low predominant frequency with increasing intensity. The transfer functions of accelerations (Fourier spectra of output accelerations over that of shaking table accelerations) at the top of the pile groups supporting the auxiliary piers were bimodal, which is different from the results of shaking table tests simulating the superstructure with a single degree of freedom (SDOF) system, in which only unimodal transfer functions can be obtained. The influence of the wave passage effect on the seismic response of the pile groups is detectable when the bridge model is excited longitudinally, while the influence is undetectable when the bridge model is excited transversely.
机译:对整体式大跨度斜拉桥模型进行了多次振动台试验,以研究桩基基础的横向响应。根据假定桥的总长度2672 m和几何相似比1/70制作了精细的桥模型。桥梁模型的上部结构由桥梁,电缆,两个过渡墩,四个辅助墩和两个吊塔组成。该模型的子结构由嵌入合成土壤中的八组桩组成。当桥梁在横向上受到均匀和非均匀激励时,分别分析了支撑过渡墩,辅助墩和塔架的桩的加速度,位移和弯矩。通过在不同的时间将相同的运动输入到不同的振动台上来执行非均匀激励测试。从低强度到高强度,将三种不同主要频率的地震波应用于整体桥梁模型。测试结果表明,尽管整体桥梁模型受到均匀激励,但支撑上部结构不同部分的桩组顶部的运动之间仍存在明显差异。桩组之间较大的位移差异可能是上部结构损坏甚至崩溃的原因之一。当桥梁模型受到强度降低的低频率波激励时,支撑过渡墩的桩组顶部的加速度放大率增加。在支撑辅助墩的桩群顶部,加速度的传递函数(输出加速度的傅立叶谱比振动台加速度的傅立叶谱)是双峰的,这与振动台试验模拟单层结构的上部结构的结果不同。自由(SDOF)系统,其中只能获得单峰传递函数。当桥梁模型被纵向激励时,波通过效应对桩群地震响应的影响是可检测的,而当桥梁模型被横向激励时,则无法检测到波影响。

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