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1D-Hierarchical Ritz and 2D-GDQ Formulations for the free vibration analysis of circular/elliptical cylindrical shells and beam structures

机译:1D-分层RITZ和2D-GDQ配方,用于圆形/椭圆形圆柱形壳体和梁结构的自由振动分析

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摘要

The present paper proposes a comparison between two different computational techniques to evaluate the natural frequencies of some selected structural components. More specifically, three case studies are investigated: i) Isotropic circular and elliptical cylindrical shells; ii) Non-homogeneous circular cylindrical shell sectors; iii) Homogeneous and non-homogeneous rectangular beams. The 1D-Hierarchical Ritz Formulation (HRF) with 3D capabilities and the 2D-Generalized Differential Quadrature (GDQ) formulation (both in a weakand a strong-form) are assessed by using a Finite Element Method (FEM) software. For both computational methodologies the Method of Power Series Expansion of the Displacement Components (MPSEDCs) has been employed. A parametric investigation is performed to study the sensitivity of the natural frequencies to some significant parameters, namely, the boundary conditions, the length-to-thickness ratio, as well as some material and geometrical properties. The main advantages of the proposed solution techniques are discussed in terms of convergence and accuracy, for each selected case study.
机译:本文提出了两种不同的计算技术与评估一些所选结构部件的自然频率之间的比较。更具体地,研究了三种情况研究:I)各向同性圆形和椭圆形圆柱形壳; ii)非均匀圆形圆柱形壳体扇区; iii)均匀和非均匀的矩形梁。通过使用有限元方法(FEM)软件,通过使用有限元方法(FEM)软件来评估具有3D能力的1D分层RITZ配方(HRF)和2D通用差分正交(GDQ)制剂(两者在弱和强度)。对于两种计算方法,已经采用了位移组件(MPSEDC)的电力串联扩展方法。进行参数查研究以研究自然频率对一些重要参数的敏感性,即边界条件,长度厚度,以及一些材料和几何特性。对于每个所选案例研究,在收敛和准确性方面讨论了所提出的解决方案技术的主要优点。

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