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COMBINED STEADY STATE AND TRANSIENT ANALYSIS OF A PATROL VESSEL AS AFFECTED BY VARYING AMOUNTS OF DAMPING AND PERIODIC AND RANDOM WAVE EXCITATION

机译:巡逻船的稳态和瞬态分析,受阻脉冲和周期性和随机波激励的影响

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Traditional naval architecture analysis of ship survival-ability involves analyzing the vessel righting arm curve in isolation or as compared to a steady wind heeling moment. It is well known that ships do not capsize in calm water and infinite time but do so in rough seas and do so dynamically in short time. Understanding the shortcomings of the traditional approach especially for advanced vessels numerous researchers in the ship dynamics field have proposed an alternative view of ship stability analysis, which involves dynamical analysis. Unfortunately, most ship motions analysis is linear and uses ideal flow theory both of which are inadequate descriptions of large amplitude ship rolling motion. Moreover, much of engineering nonlinear vibrations analysis involves perturbation methods where the nonlinearity is assumed small. Numerical simulation and physical model testing to find this critical behavior is time consuming and expensive. An alternative approach involves directly calculating critical behavior. This approach was originally developed for periodic forcing at a single frequency possibly the linear natural frequency. However, nonlinear resonance is much more complicated than linear resonance and more than a single frequency, multi-valued behavior can occur over a range of frequencies. Moreover, the phenomena which are possible for a nonlinear system are much more varied and diverse. In this paper we will analyze a traditional displacement hull form's critical response in harmonic waves at the system's linear natural frequency and compare this to the system's critical response in random waves. We will compare these responses for different values of damping using these different analysis techniques.
机译:传统的海军架构分析船舶生存能力涉及分析靶向臂曲线的隔离,或与稳定的风力磨牙时刻相比。众所周知,船只不会在平静的水中倾覆,但在汹涌的海洋中这样做,在短时间内动态地进行。了解传统方法的缺点,特别是对于船舶动态领域的众多研究人员占船舶稳定性分析的替代视图,涉及动力学分析。不幸的是,大多数船舶运动分析是线性的,并且使用理想的流动理论,其中两者都不充分的大振幅滚动运动。此外,大部分工程非线性振动分析涉及非线性假设小的扰动方法。数值模拟和物理模型测试,找到这种关键行为是耗时和昂贵的。另一种方法涉及直接计算关键行为。该方法最初开发用于定期强制以单个频率强制,可能是线性自然频率。然而,非线性谐振比线性谐振更复杂,并且多于单个频率,多值行为可能发生在一系列频率上。此外,非线性系统可能的现象更加多样化和多样化。在本文中,我们将分析传统的位移船体形式在系统的线性自然频率下谐波波的关键响应,并将其与随机波中的系统的关键响应进行比较。我们将使用这些不同的分析技术比较对不同减压值的这些响应。

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