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首页> 外文期刊>Advances in Structural Engineering >Wave and wave-current actions on a bridge tower: An experimental study
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Wave and wave-current actions on a bridge tower: An experimental study

机译:桥梁塔上的波浪和波浪流作用:实验研究

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摘要

With a scale of 1:100, an experimental model was set up to investigate the dynamic responses of a bridge tower subjected to ocean waves and wave-currents. The bridge tower was designed for a sea-crossing bridge. Based on a pile-group foundation, it was designed to be a typical gate-type structure. Wave-induced base shear forces on the foundation and motion responses of the tower were measured and analyzed. The experimental results show that when a wave period is close to the natural period of the structure, an obvious resonance will be induced on the structure. For different wave action angles, the longitudinal incident waves induced the largest longitudinal base shear forces on the foundation and the greatest dynamic motions on the upper tower of the structure. Because of the pile-group effectiveness, the incident directions of the waves and the wave periods affect the acting forces on the foundation of the structure. For wave-current actions, forward currents increase the forward wave forces on the foundation and decrease the backward forces, but do not significantly affect the motion responses of the upper tower. The experimental results can be used as the verification data for numerical calculations. With the structural forms of the pile-group and the gate-type tower being typical, the results given in this study can be used as a reference for similar engineering designs.
机译:以1:100的比例,建立了一个实验模型来研究桥梁塔在海浪和波流作用下的动力响应。桥塔是为跨海大桥设计的。在桩基基础上,将其设计为典型的闸门式结构。测量并分析了波在基础上的基础剪力和塔的运动响应。实验结果表明,当波浪周期接近结构的自然周期时,会在结构上产生明显的共振。对于不同的波浪作用角,纵向入射波在基础上引起最大的纵向基础剪力,并在结构的上部塔架上引起最大的动态运动。由于桩组的有效性,波浪的入射方向和波浪周期会影响结构基础上的作用力。对于波浪流作用,正向电流会增加基础上的正向波浪力,并减小反向力,但不会显着影响上塔的运动响应。实验结果可以用作数值计算的验证数据。以桩组和闸门式塔的典型结构形式为例,本研究给出的结果可作为类似工程设计的参考。

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