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Numerical investigation of the lateral restraining stiffness effect on the bridge deck-wave interaction under Stokes waves

机译:斯托克斯波作用下侧向约束刚度对桥面波相互作用的数值研究

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This paper addresses one fundamental question on the bridge deck-wave interaction: do the bridge deck vibrations result in smaller wave forces on the deck? In other words, are there any benefits to the coastal bridge structures vulnerable to waves once the bridge superstructure (deck) is allowed to vibrate to some extent, similar to the lateral restraining setups adopted to bridges in seismic areas? Based on a methodology of the mass-spring-damper system using a dynamic mesh updating technique proposed in previous studies, a wave model of the Stokes 2nd order wave theory is applied and verified with analytical solutions and experimental measurements in the literature, assuring a valid prediction in the following parametric study. The shear stress transport (SST) k-omega model is used as the turbulence closure for the RANS equations in order to capture the turbulence effects in the bridge deck-wave interaction. In the parametric study, general characteristics of the structural vibration and the wave forces are observed and discussed. The obtained results show that increasing the structural flexibilities in the transverse lateral direction does not necessarily benefit the bridge structure with an obvious force reduction for both the horizontal and vertical force's on the bridge superstructure. However, this will unfortunately lead to larger horizontal forces on the interface between the bridge super and substructure and larger dynamic amplification factors for the bridge decks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文针对桥面波相互作用的一个基本问题:桥面振动会导致桥面的波浪力较小吗?换句话说,一旦允许桥梁上部结构(甲板)振动到一定程度,类似于地震地区桥梁采用的侧向约束装置,沿海桥梁结构是否容易受到波浪的冲击?基于先前研究中提出的使用动态网格更新技术的质量弹簧-阻尼器系统的方法,应用了斯托克斯二阶波动理论的波动模型,并通过文献中的解析解和实验测量进行了验证,以确保有效以下参数研究中的预测。为了捕获桥面波相互作用中的湍流效应,将剪应力输运(SST)k-ω模型用作RANS方程的湍流闭合。在参数研究中,观察并讨论了结构振动和波浪力的一般特征。所获得的结果表明,增加横向横向的结构柔性并不一定有益于桥梁结构,因为桥梁上部结构上的水平和垂直力都明显减小了。然而,不幸的是,这将导致在桥梁上部和下部结构之间的界面上产生更大的水平力,并为桥梁面板带来更大的动态放大系数。 (C)2016 Elsevier Ltd.保留所有权利。

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