Accurate Results for Free Vibration of Doubly Curved Shallow Shells of Rectangular Planform (Part.1)

D. Narita, Y. Narita
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引用次数: 3

Abstract

A method is presented for determining the free vibration frequencies of doubly curved, isotropic shallow shells under general edge conditions and is used to obtain accurate natural frequencies for wide range of geometric parameters. Based on the shallow shell theory applicable to thin thickness shells, a method of Ritz is extended to derive a frequency equation wherein the displacement functions are modified to accommodate arbitrary sets of edge conditions for both in-plane and out-of-plane motions. In numerical computation, convergence is tested against series terms and comparison study is made with existing results by other authors. Twenty one sets of frequency parameters are tabulated for a wide range of shell shape and curvature ratio to serve as data for future comparison and practical design purpose.  
矩形平面双弯曲浅壳自由振动的精确结果(1)
提出了一种确定双弯曲各向同性浅壳在一般边缘条件下的自由振动频率的方法,并用于在大范围几何参数下获得精确的固有频率。基于适用于薄壳的浅壳理论,扩展了Ritz方法,导出了频率方程,其中位移函数进行了修改,以适应面内和面外运动的任意边缘条件集。在数值计算中,对级数项进行了收敛性检验,并与已有结果进行了比较研究。为广泛的壳体形状和曲率比,列出了21组频率参数,作为将来比较和实际设计的数据。
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