首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >On the second order effect of the springing response of large blunt ship
【24h】

On the second order effect of the springing response of large blunt ship

机译:大型钝船弹跳响应的二阶效应

获取原文
获取外文期刊封面目录资料

摘要

ABSTRACT The springing response of a large blunt ship was considered to be influenced by a second order interaction between the incoming irregular wave and the blunt geometry of the forebody of the ship. Little efforts have been made to simulate this complicated fluid-structure interaction phenomenon under irregular waves considering the second order effect; hence, the above mentioned premise still remains unproven. In this paper, efforts were made to quantify the second order effect between the wave and vibrating flexible ship structure by analyzing the experimental data obtained through the model basin test of the scaled-segmented model of a large blunt ship. To achieve this goal, the measured vertical bending moment and the wave elevation time history were analyzed using a higher order spectral analysis technique, where the quadratic interaction between the excitation and response was captured by the cross bispectrum of two randomly oscillating variables. The nonlinear response of the vibrating hull was expressed in terms of a quadratic Volterra series assuming that the wave excitation is Gaussian. The Volterra series was then orthogonalized using Barrett’s procedure to remove the interference between the kernels of different orders. Both the linear and quadratic transfer functions of the given system were then derived based on a Fourier transform of the orthogonalized Volterra series. Finally, the response was decomposed into a linear and quadratic part to determine the contribution of the second order effect using the obtained linear and quadratic transfer functions of the system, combined with the given wave spectrum used in the experiment. The contribution of the second order effect on the springing response of the analyzed ship was almost comparable to the linear one in terms of its peak power near the resonance frequency.
机译:摘要大型钝船的弹力响应被认为受到入射不规则波与船前体钝几何之间的二阶相互作用的影响。考虑到二阶效应,很少有人努力模拟不规则波下的这种复杂的流固耦合现象。因此,上述前提仍然未经证实。本文通过分析大型钝船按比例分段模型的模型盆试验获得的实验数据,努力量化波浪与振动柔性船结构之间的二阶效应。为了实现此目标,使用更高阶的频谱分析技术分析了测得的垂直弯矩和波高时程,其中通过两个随机振荡变量的交叉双谱来捕获激励和响应之间的二次相互作用。假设波浪激励是高斯的,则用二次Volterra级数表示振动船体的非线性响应。然后使用Barrett的程序对Volterra系列进行正交化处理,以消除不同阶数内核之间的干扰。然后,基于正交的Volterra级数的傅立叶变换,得出给定系统的线性和二次传递函数。最后,使用获得的系统线性和二次传递函数,结合实验中使用的给定频谱,将响应分解为线性和二次部分,以确定二阶效应的贡献。就其在共振频率附近的峰值功率而言,二阶效应对被分析船的弹力响应的贡献几乎与线性船相当。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号