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Modelling and analysis of coupled nonlinear oscillations of a floating body in two degrees of freedom

机译:两自由度浮体耦合非线性振动的建模与分析

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摘要

We describe a mathematical model to investigate the effect of coupled nonlinear oscillations of a floating body in time domain under the influence of sinusoidal waves. To account for hydrodynamic forces, a mathematical formulation for added mass moments of inertia, damping and restoring moments is presented for roll and yaw. Using perturbation technique, we obtain order wise solutions in the normalized domain wherein the assumption on small distortion holds. On applying Laplace transform, a zeroth-order solution is obtained in closed form whereas for higher order solutions we resort to the Runge-Kutta method with adaptive step size algorithm. For analyzing the model result we perform numerical experiments for a vessel of mass 19190 tons under the action of a beam wave of frequency 0.74 rad/sec and 1.0 m wave height. The validity of the numerical scheme is checked by comparing with the analytical solution for uncoupled zeroth-order roll and then we proceed to examine the effect of coupled behavior of roll and yaw for higher-order approximations. The inter-dependence between wave frequency (ω), system frequency (β) and damping factor (ζ) is obtained to reveal system stability. Model results indicate an artificial increase in amplitude for uncoupled roll, and also emphasize the contribution of viscous damping in roll in contrast to added mass in yaw.
机译:我们描述了一个数学模型来研究正弦波影响下时域中浮体耦合非线性振荡的影响。为了考虑流体动力,提出了用于滚动和偏航的附加质量惯性矩,阻尼和恢复矩的数学公式。使用扰动技术,我们在归一化域中获得了有序解,其中关于小失真的假设成立。在应用拉普拉斯变换时,以封闭形式获得零阶解,而对于更高阶的解,我们采用具有自适应步长算法的Runge-Kutta方法。为了分析模型结果,我们对质量为19190吨的船只在频率为0.74 rad / sec的束波和1.0 m的波高的作用下进行了数值实验。通过与非耦合零阶侧倾的解析解进行比较,验证了数值方案的有效性,然后我们针对更高阶近似,研究了侧倾和横摆耦合行为的影响。获得了波频率(ω),系统频率(β)和阻尼因子(ζ)之间的相互依赖性,以揭示系统的稳定性。模型结果表明,非耦合侧倾幅度是人为增加的,与偏航增加的质量相比,还强调了侧向粘性阻尼的贡献。

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  • 来源
    《Acta Mechanica》 |2006年第2期|31-42|共12页
  • 作者

    S. K. Das; S. N. Das;

  • 作者单位

    Mathematical Modelling Centre Central Water and Power Research Station Khadakwasla (R.S.) Pune 411 024 India;

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  • 正文语种 eng
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