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首页> 外文期刊>International journal of steel structures >Free Vibration Analysis of Thin Circular Cylindrical Shell with Closure Using Finite Element Method
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Free Vibration Analysis of Thin Circular Cylindrical Shell with Closure Using Finite Element Method

机译:封闭的薄圆柱圆柱壳自由振动的有限元分析

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摘要

Vibration analysis of a thin circular cylindrical shell with closure is conducted using finite element method (FEM). Theoretically, shell vibrates in different axial modes, m; circumferential modes, n; and any of their combinations with corresponding modal frequencies. The present FEM results are verified by the results reported in the literature using various shell theories. The eigenvalues of the shell are extracted using block Lanczos and subspace iteration methods, in order to investigate their computational efficacy. Further, the effect of adding various types of closures at one end of the circular cylindrical shell such as flat, cone, and dome, on the modal frequencies are investigated. The two aspect ratios (length to radius ratio) of shell with closure, broad, and slender are considered for this study. The effect of the ratio of the thickness of the closure to the thickness of shell wall on the frequency is also investigated. For the shell with the closure, the vibration modes can be cylinder, closure, or combined cylinder and closure. The modal frequency of the cylindrical shell is significantly affected by the closure. The lowest frequency is observed in the flat type of closure in both the broad and slender cylindrical shells in comparison to the non-closure, dome, and cone type of the closures.
机译:使用有限元方法(FEM)对带有密封盖的薄圆柱壳进行了振动分析。从理论上讲,壳体以不同的轴向模式m振动。圆周模式,n;以及它们的任何组合以及相应的模态频率。目前的有限元分析结果已通过文献报道的各种壳理论得到了验证。使用块Lanczos和子空间迭代方法提取壳的特征值,以研究其计算效率。此外,研究了在圆柱壳的一端添加各种类型的封闭件(如平板,圆锥和圆顶)对模态频率的影响。本研究考虑了具有闭合,宽和细长壳体的两个长宽比(长度与半径之比)。还研究了封盖厚度与壳壁厚度之比对频率的影响。对于带盖的壳体,振动模式可以是圆柱,盖或组合的圆柱和盖。圆柱壳的模态频率受闭合影响很大。与非封闭,圆顶和圆锥形封闭相比,在扁平和细长圆柱壳中封闭类型的封闭中观察到的最低频率。

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