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Free Vibration Analysis for Shells of Revolution Using an Exact Dynamic Stiffness Method

机译:旋转壳​​体自由振动的精确动力刚度分析

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摘要

An exact generalised formulation for the free vibration of shells of revolution with general shaped meridians and arbitrary boundary conditions is introduced. Starting from the basic shell theories, the vibration governing equations are obtained in the Hamilton form, from which dynamic stiffness is computed using the ordinary differential equations solver COLSYS. Natural frequencies and modes are determined by employing the Wittrick-Williams (W-W) algorithm in conjunction with the recursive Newton's method, thus expanding the applications of the abovementioned techniques from one-dimensional skeletal structures to two-dimensional shells of revolution. A solution for solving the number of clamped-end frequencies J(0) in the W-Walgorithm is presented for both uniform and nonuniform shell segment members. Based on these theories, a FORTRAN program is written. Numerical examples on circular cylindrical shells, hyperboloidal cooling tower shells, and spherical shells are given, and error analysis is performed. The convergence of the proposed method on J(0) is verified, and comparisons with frequencies from existing literature show that the dynamic stiffness method is robust, reliable, and accurate.
机译:介绍了具有一般形状的子午线和任意边界条件的旋转壳自由振动的精确广义公式。从基本壳理论出发,以汉密尔顿形式获得振动控制方程,然后使用常微分方程求解器COLSYS计算其动态刚度。通过使用Wittrick-Williams(W-W)算法与递归牛顿法相结合来确定固有频率和模式,从而将上述技术的应用范围从一维骨架结构扩展到二维旋转壳。针对均匀和不均匀的壳段成员,提出了一种解决W-Walgorithm中钳位频率J(0)数量的解决方案。基于这些理论,编写了一个FORTRAN程序。给出了圆柱壳,双曲面冷却塔壳和球形壳的数值例子,并进行了误差分析。验证了该方法在J(0)上的收敛性,并且与现有文献的频率进行比较表明,动态刚度方法是鲁棒,可靠和准确的。

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  • 来源
    《Mathematical Problems in Engineering》 |2016年第9期|4513520.1-4513520.12|共12页
  • 作者

    Chen Xudong; Ye Kangsheng;

  • 作者单位

    Jiangsu Univ Sci & Technol, Sch Naval Architecture & Civil Engn, Zhangjiagang 215600, Peoples R China;

    Tsinghua Univ, Dept Civil Engn, Beijing 100084, Peoples R China;

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  • 正文语种 eng
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