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Modeling and Identification of a Nonlinear SDOF Moored Structure, Part 2―Comparisons and Sensitivity Study

机译:非线性SDOF系泊结构的建模与识别,第2部分—比较和灵敏度研究

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摘要

A system-identification technique based on the Reverse Multiple-Input/Single-Output (R-MI/SO) procedure is applied to identify the parameters of an experimental mooring system exhibiting nonlinear behavior. In Part 1, two nonlinear small-body hydrodynamic Morison type formulations: (A) with a relative-velocity (RV) model, and (B) with an independent-flow-field (IFF) model, are formulated. Their associated nonlinear system-identification algorithms based on the R-MI/SO system-identification technique: (A.1) nonlinear-structure linearly damped, and (A.2) nonlinear-structure coupled hydrodynami-cally damped for the RV model, and (B.1) nonlinear-structure nonlineariy damped for the IFF model, are developed for an experimental submerged-sphere nonlinear mooring system under ocean waves. The analytic models and the associated algorithms for parametric identification are described. In this companion paper (Part 2), we use the experimentally measured input wave and output system response data and apply the algorithms derived based on the tnultiple-input/single-output linear analysis of the reverse dynamic systems to identify the system parameters. The two nonlinear models are examined in detail and the most suitable physical representative model is selected for the mooring system considered. A sensitive analysis is conducted to investigate the coupled hydrodynamic forces modeled by the Morison equation, the nonlinear stiffness from mooring lines and the nonlinear response. The appropriateness of each model is discussed in detail.
机译:应用基于反向多输入/单输出(R-MI / SO)程序的系统识别技术来识别表现出非线性行为的实验性系泊系统的参数。在第1部分中,提出了两种非线性的小体流体动力莫里森型公式:(A)具有相对速度(RV)模型和(B)具有独立流场(IFF)模型。他们基于R-MI / SO系统识别技术的相关非线性系统识别算法:对于RV模型,(A.1)非线性结构线性阻尼,以及(A.2)非线性结构耦合水动力阻尼,和(B.1)为IFF模型提供阻尼的非线性结构非线性被开发用于海浪下的实验性水下球面非线性系泊系统。描述了用于参数识别的分析模型和相关算法。在此配套论文(第2部分)中,我们使用实验测量的输入波和输出系统响应数据,并应用基于逆动态系统的多输入/单输出线性分析得出的算法来识别系统参数。详细研究了两个非线性模型,并为所考虑的系泊系统选择了最合适的物理代表模型。进行了敏感的分析,以研究由Morison方程建模的耦合流体动力,系泊缆的非线性刚度和非线性响应。详细讨论了每种模型的适用性。

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