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Power Secant Method applied to natural frequency extraction of Timoshenko beam structures

机译:power Thant方法应用于Timoshenko梁结构的自然频率提取

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摘要

This work deals with an improved plane frame formulation whose exact dynamic stiffness matrix (DSM) presents, uniquely, null determinant for the natural frequencies. In comparison with the classical DSM, the formulation herein presented has some major advantages: local mode shapes are preserved in the formulation so that, for any positive frequency, the DSM will never be ill-conditioned; in the absence of poles, it is possible to employ the secant method in order to have a more computationally efficient eigenvalue extraction procedure. Applying the procedure to the more general case of Timoshenko beams, we introduce a new technique, named ""power deflation"", that makes the secant method suitable for the transcendental nonlinear eigenvalue problems based on the improved DSM. In order to avoid overflow occurrences that can hinder the secant method iterations, limiting frequencies are formulated, with scaling also applied to the eigenvalue problem. Comparisons with results available in the literature demonstrate the strength of the proposed method. Computational efficiency is compared with solutions obtained both by FEM and by the Wittrick-Williams algorithm.
机译:这项工作涉及一种改进的平面框架公式,其精确的动态刚度矩阵(DSM)唯一地代表了固有频率的零决定因素。与经典的DSM相比,本文介绍的配方具有一些主要优点:配方中保留了局部模式形状,因此,对于任何正频率,DSM都不会不适。在没有极点的情况下,可以采用割线法来获得更有效的特征值提取过程。将该程序应用于Timoshenko光束的更一般情况,我们引入了一种称为““功率放气””的新技术,该技术使割线方法适合于基于改进DSM的先验非线性特征值问题。为了避免出现会阻碍割线方法迭代的溢出现象,制定了限制频率,并将缩放比例也应用于特征值问题。与文献中可用结果的比较证明了该方法的优势。将计算效率与通过FEM和Wittrick-Williams算法获得的解决方案进行比较。

著录项

  • 作者

    Dias, Carlos Alberto Nunes;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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