首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Numerical Modeling and Dynamic Analysis of a Floating Bridge Subjected to Wind, Wave, and Current Loads
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Numerical Modeling and Dynamic Analysis of a Floating Bridge Subjected to Wind, Wave, and Current Loads

机译:风,浪和电流荷载作用下的浮桥数值建模和动力分析

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摘要

Designing reliable and cost-effective floating bridges for wide and deep fjords is very challenging. The floating bridge is subjected to various environmental loads, such as wind, wave, and current loads. All these loads and associated load effects should be properly evaluated for ultimate limit state design check. In this study, the wind-, wave-, and current-induced load effects are comprehensively investigated for an end-anchored curved floating bridge, which was an early concept for crossing the Bjornafjorden. The considered floating bridge is about 4600 m long and consists of a cable-stayed high bridge part and a pontoon-supported low bridge part. It also has a large number of eigen-modes, which might be excited by the environmental loads. Modeling of wind loads on the bridge girder is first studied, indicating that apart from aerodynamic drag force, aerodynamic lift and moment on the bridge girder should also be considered due to their significant contribution to axial force. Turbulent wind spectrum and spatial coherence play an important role and should also be properly determined. The sway motion, axial force, and strong axis bending moment of the bridge girder are mainly induced by wind loads, while the heave motion, weak axis bending moment, and torsional moment are mainly induced by wave loads. Turbulent wind can cause significant larger low-frequency eigen-mode resonant responses than the second-order difference frequency wave loads. Current loads mainly contribute damping and reduce the variations of sway motion, axial force, and strong axis bending moment.
机译:为宽阔而深沉的峡湾设计可靠且具有成本效益的浮桥非常具有挑战性。浮桥承受各种环境负荷,例如风,浪和电流负荷。所有这些负载和相关的负载影响都应进行适当评估,以进行极限状态设计检查。在这项研究中,全面研究了风荷载,波浪荷载和电流荷载对端部锚固弯曲浮桥的影响,这是穿越比约纳峡湾的早期概念。所考虑的浮桥长约4600 m,由斜拉高桥部分和浮桥支撑低桥部分组成。它还具有大量的本征模式,可能会受到环境负荷的激发。首先研究了桥梁上的风荷载模型,这表明,除了空气阻力外,由于它们对轴向力的重要贡献,还应考虑空气动力学升力和桥梁上的力矩。湍流的风谱和空间相干性起着重要作用,还应适当确定。桥梁的摇摆运动,轴向力和强轴弯矩主要由风荷载引起,而升沉运动,弱轴弯矩和扭转矩主要由波浪荷载引起。与二阶差分频率波负载相比,湍流风会引起更大的低频本征模式共振响应。电流负载主要起到阻尼作用,并减少摇摆运动,轴向力和强轴弯矩的变化。

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  • 来源
    《Journal of offshore mechanics and arctic engineering》 |2019年第1期|011601.1-011601.17|共17页
  • 作者单位

    Norwegian Univ Sci & Technol NTNU, Ctr Autonomous Marine Operat & Syst AMOS, Dept Marine Technol, N-7491 Trondheim, Norway;

    Norwegian Univ Sci & Technol NTNU, Ctr Autonomous Marine Operat & Syst AMOS, Dept Marine Technol, N-7491 Trondheim, Norway;

    Norwegian Univ Sci & Technol NTNU, Ctr Autonomous Marine Operat & Syst AMOS, Dept Marine Technol, N-7491 Trondheim, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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