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首页> 外文期刊>Journal of Sound and Vibration >Added mass matrix estimation of beams partially immersed in water using measured dynamic responses
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Added mass matrix estimation of beams partially immersed in water using measured dynamic responses

机译:使用测得的动态响应增加了对部分浸入水中的梁的质量矩阵估计

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An added mass matrix estimation method for beams partially immersed in water is proposed that employs dynamic responses, which are measured when the structure is in water and in air. Discrepancies such as mass and stiffness matrices between the finite element model (FEM) and real structure could be separated from the added mass of water by a series of correction factors, which means that the mass and stiffness of the FEM and the added mass of water could be estimated simultaneously. Compared with traditional methods, the estimated added mass correction factors of our approach will not be limited to be constant when FEM or the environment of the structure changed, meaning that the proposed method could reflect the influence of changes such as water depth, current, and so on. The greatest improvement is that the proposed method could estimate added mass of water without involving any water-related assumptions because all water influences are reflected in measured dynamic responses of the structure in water. A five degrees-of-freedom (dofs) mass-spring system is used to study the performance of the proposed scheme. The numerical results indicate that mass, stiffness, and added mass correction factors could be estimated accurately when noise-free measurements are used. Even when the first two modes are measured under the 5 percent corruption level, the added mass could be estimated properly. A steel cantilever beam with a rectangular section in a water tank at Ocean University of China was also employed to study the added mass influence on modal parameter identification and to investigate the performance of the proposed method. The experimental results demonstrated that the first two modal frequencies and mode shapes of the updated model match well with the measured values by combining the estimated added mass in the initial FEM. (C) 2014 Elsevier Ltd. All rights reserved.
机译:提出了一种针对部分浸入水中的梁的附加质量矩阵估计方法,该方法利用了动态响应,该响应在结构处于水中和空气中时进行测量。有限元模型(FEM)与实际结构之间的质量和刚度矩阵之类的差异可以通过一系列校正因子与水的附加质量分开,这意味着FEM的质量和刚度以及水的附加质量可以同时估算。与传统方法相比,当有限元或结构环境发生变化时,我们方法的估计附加质量校正因子将不限于恒定,这意味着所提出的方法可以反映水深,水流和水深等变化的影响。以此类推。最大的改进是,由于所有水影响都反映在水中结构的动态响应中,因此所提出的方法可以在不涉及任何与水有关的假设的情况下估算出水的增加量。五自由度(dofs)质量弹簧系统用于研究所提出方案的性能。数值结果表明,使用无噪声测量时,可以准确估算质量,刚度和附加的质量校正因子。即使在5%的损坏水平下测量前两种模式时,也可以正确估算增加的质量。还利用中国海洋大学水箱中的矩形截面钢悬臂梁研究了附加质量对模态参数识别的影响,并研究了该方法的性能。实验结果表明,通过组合初始FEM中估计的附加质量,更新后的模型的前两个模态频率和模态形状与测量值非常匹配。 (C)2014 Elsevier Ltd.保留所有权利。

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