首页> 外文会议>International Conference on Ocean, Offshore and Arctic Engineering >COMPARATIVE STUDY ON RAOS OF A SHIP UNDER TRANSIENT GAUSSIAN WAVE PACKETS BY MARGINAL HILBERT SPECTRUM AND FOURIER SPECTRUM
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COMPARATIVE STUDY ON RAOS OF A SHIP UNDER TRANSIENT GAUSSIAN WAVE PACKETS BY MARGINAL HILBERT SPECTRUM AND FOURIER SPECTRUM

机译:边缘希尔伯特谱与傅里叶谱临时高斯波包下船舶RAO的比较研究

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摘要

Sea-keeping model tests of ships based on transient waves have been widely applied over the past several decades. In order to obtain response amplitude operators (RAOs) of a ship, most of the post-processing of the experimental data uses the fast Fourier transform (FFT) to obtain the wave spectrum and the corresponding response spectrum. However, for transient waves related model tests, FFT may produce larger errors due to its characteristics. Hilbert-Huang transform (HHT) is a newly developed signal analysis tool which is suitable for nonlinear and non-stationary data. The application of HHT to the post-processing of the experimental data of sea-keeping model tests of ships has not yet been investigated. In this study, the transient wave packets satisfying a Gaussian wave spectrum were generated in a large towing tank to conduct the sea-keeping model tests of a drilling ship under the condition of head waves, oblique waves and beam waves, respectively. Then the marginal Hilbert spectrum (MHS) in the framework of HHT is introduced to obtain the motion and the acceleration RAOs the drilling ship. In order to demonstrate the effectiveness of the approach, the results based on FFT and regular waves are also presented. It is found that in most cases, in comparison to that by means of FFT, the RAOs of the ship based on the transient Gaussian wave packets by means of MHS agree better with the results based on regular waves, especially for roll motion with significant nonlinear characteristics. Due to the advantages of HHT, the MHS approach employed in this study is expected to play a vital role in more sea-keeping related model tests of ships.
机译:基于瞬态波浪的海上船舶模型试验已广泛应用于过去几十年。为了获得船舶的响应幅度运算符(RAOS),实验数据的大多数后处理使用快速傅里叶变换(FFT)来获得波谱和相应的响应谱。然而,对于瞬态波相关的模型测试,FFT可能由于其特性而产生更大的误差。 Hilbert-Huang变换(HHT)是一种新开发的信号分析工具,适用于非线性和非静止数据。 HHT在海上船舶海上模型试验实验数据后的应用尚未进行调查。在该研究中,在大型牵引箱中产生满足高斯波谱的瞬态波分组,以分别在头部波,倾斜波和光束波的条件下进行钻孔的海上型号试验。然后引入HHT框架中的边缘希尔伯特光谱(MHS)以获得运动和加速度纳米钻孔。为了证明该方法的有效性,还提出了基于FFT和常规波的结果。结果,在大多数情况下,与通过FFT的情况相比,基于MHS的瞬态高斯波包的船的RAOS与基于常规波的结果更好地同意,特别是对于具有显着非线性的滚动运动特征。由于HHT的优点,本研究中采用的MHS方法预计将在更多海上相关的船舶相关模型测试中发挥重要作用。

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