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Rotational excitation of bridges supported on pile groups in soft or liquefiable soil deposits

机译:软弱或可液化土壤中桩基支撑桥梁的旋转激励

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This paper investigates the seismic response of reinforced concrete bridges founded on pile groups in soft or liquefiable soil deposits under simultaneous translational and rotational earthquake excitation. The pile cap rotational excitation results from pile bending under vertically propagating seismic S-waves. The response of the pile cap (in terms of displacement and rotation) defines the Foundation Input Motion (F.I.M.) computed through kinematic interaction analysis. The resulting superstructure demand due to the coupled translational and rotational excitation is compared to the demand developed due to translational only F.I.M. The results confirm earlier observations regarding the impact of pile bending on rigid body rotations of bridges founded with cast-in-drilled hole single piles. It is also shown that the excitation mechanism of pile groups in soft soils is non-uniform along the pile length, thus exciting higher modes of vibration and inducing out-of-phase translational and rotational response of the pile cap. (C) 2015 Civil-Comp Ltd and Elsevier Ltd. All rights reserved.
机译:本文研究了在平移和旋转地震激励作用下,在软弱或可液化土壤中桩基上的钢筋混凝土桥梁的地震响应。桩帽旋转激励是由在垂直传播的地震S波作用下的桩弯曲引起的。桩帽的响应(就位移和旋转而言)定义了通过运动相互作用分析计算出的基础输入运动(F.I.M.)。将由于平移和旋转激励耦合而产生的上层建筑需求与仅因平移而产生的需求进行比较。结果证实了有关桩弯曲对钻孔单桩基础桥梁刚体旋转影响的早期观察结果。研究还表明,软土中群桩的激励机制沿桩长不均匀,从而激发了更高的振动模式,并引起桩帽的异相平移和旋转响应。 (C)2015 Civil-Comp Ltd和Elsevier Ltd.保留所有权利。

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