首页> 外文期刊>Marine Structures >Experimental and numerical investigation of a jacket structure subject to steep and breaking regular waves
【24h】

Experimental and numerical investigation of a jacket structure subject to steep and breaking regular waves

机译:夹套结构的实验性和数值研究,其陡峭和破碎常规波

获取原文
获取原文并翻译 | 示例
       

摘要

Jacket structures installed in shallow water less than 50 m for offshore wind turbines are frequently exposed to steep and even breaking waves, which may result in severe damage of the structure. However, the models for calculating wave loads were primarily developed for monopile structures, and may not be suitable for jacket structures. The aim of this paper is to improve the understanding of extreme wave loads on jacket structures exposed to steep and breaking waves, based on a combination of numerical modeling and large scale experiments. The experiments with a 1:8 scaled jacket structure exposed to controlled regular waves were conducted in the WaveSlam project. In this study, the measured wave surface elevations and water particle velocities from the experiments are reproduced using a fully nonlinear potential flow solver with a fairly good agreement. Furthermore, the validity of the Morison equation applied to jacket structures is investigated. A reasonably good agreement is achieved for the steep waves without occurrence of breaking. In terms of the breaking waves, the calculated hydrodynamic forcing is examined by subdividing it into a quasi-static and an impulsive slamming force component. The quasi-static force is well reproduced by the Morison equation given the fully nonlinear wave kinematics. Furthermore, eleven degrees of parameterization of the slamming force history are statistically analyzed for a better understanding of the slamming force characteristics. Significant variabilities are presented in these parameters, as a result of the inherent uncertainties in the wave breaking process. In the end, practical implications of the proposed slamming force description to load assessment of a realistic offshore wind jacket structure are discussed.
机译:夹克结构安装在浅水中,在浅水范围内小于50米,用于近海风力涡轮机经常暴露于陡峭甚至破碎的波浪,这可能导致结构严重损坏。然而,用于计算波浪载荷的模型主要用于龟头结构,并且可能不适用于夹套结构。本文的目的是提高对暴露于陡峭和断开波浪的夹套结构对极端波浪的理解,基于数值建模和大规模实验的组合。在浪潮项目中进行了暴露于受控常规波的1:8缩放夹套结构的实验。在该研究中,使用完全非线性潜在流动求和具有相当良好的一致性的实验中测量的波表面升高和水颗粒速度。此外,研究了应用于夹套结构的Morison方程的有效性。对于陡峭的波浪而没有发生破裂,实现了合理良好的一致性。就破裂波而言,通过将其细分为准静态和脉冲掠力组分来检查计算的流体动力学强制。莫里逊等于完全非线性波运动学的摩洛机构良好地再现了准静态力。此外,为了更好地理解恐怖力特性,在统治性地分析了11个参数化的歧化力历史的参数化。由于波破碎过程中固有的不确定性,在这些参数中呈现了显着的变量。最后,讨论了所提出的恐怖力描述来对逼真的海上风夹套结构进行加载评估的实际意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号