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首页> 外文期刊>Journal of Engineering Mechanics >Stochastic analysis of a single-degree-of-freedom nonlinear experimental moored system using an independent-flow-field model
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Stochastic analysis of a single-degree-of-freedom nonlinear experimental moored system using an independent-flow-field model

机译:基于独立流场模型的单自由度非线性实验系泊系统的随机分析

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Stochastic characteristics of the surge response of a nonlinear single-degree-of-freedom moored structure subjected to random wave excitations are examined in this paper. Sources of nonlinearity of the system include a complex geometric configuration and wave-induced quadratic drag. A Morison-type model with an independent-flow-field formulation and a three-term-polynomial approximation of the nonlinear restoring force is employed for its proven excellent prediction capability for the experimental results investigated. Wave excitations considered in this study include nearly periodic waves, which take into account the presence of tank noise, noisy periodic waves that have predominant periodic components with designed additive random perturbations, and narrow-band random waves. A unified wave excitation model is used to describe all the wave conditions. A modulating factor governing the degree of randomness in the wave excitations is introduced. The corresponding Fokker-Planck formulation is applied and numerically solved for the response probability density functions (PDFs). Experimental results and simulations are compared in detail via the PDFs in phase space. The PDFs portray coexisting multiple response attractors and indicate their relative strengths, and experimental response behaviors, including transitions and interactions, are accordingly interpreted from the ensemble perspective. Using time-averaged probability density functions as an invariant measure, probability distributions of large excursions in experimental and simulated responses to various random wave excitations are demonstrated and compared. Asymptotic long-term behaviors of the experimental responses are then inferred.
机译:本文研究了非线性单自由度系泊结构在随机波激励下的电涌响应的随机特性。系统的非线性源包括复杂的几何构型和波浪引起的二次阻力。采用Morison型模型,该模型具有独立的流场公式和非线性恢复力的三项多项式近似,因为它具有出色的预测性能,可用于实验结果。本研究中考虑的波激励包括考虑到油箱噪声存在的近乎周期性的波,具有主要周期分量且设计了加性随机扰动的有噪声的周期波以及窄带随机波。统一的波浪激励模型用于描述所有波浪情况。介绍了一种控制波激发中随机度的调制因子。应用了相应的Fokker-Planck公式,并对响应概率密度函数(PDF)进行了数值求解。通过相空间中的PDF详细比较了实验结果和仿真。 PDF描绘了多个响应吸引器并存,并指出了它们的相对强度,因此从整体的角度解释了实验响应行为,包括过渡和相互作用。使用时间平均概率密度函数作为不变度量,演示并比较了对各种随机波激发的实验和模拟响应中大偏移的概率分布。然后推断出实验响应的渐近长期行为。

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