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Coupled lateral-torsional frequencies of asymmetric, three-dimensional frame structures

机译:非对称三维框架结构的横向扭转频率耦合

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This paper presents a global analysis approach to the calculation of the natural frequencies of asymmetric, three-dimensional frame structures in which the primary frames run in two orthogonal directions and whose properties may vary through the height of the structure in a step-wise fashion at one or more storey levels. The governing differential equations of a substitute system are formulated using a continuum approach and posed in the form of a simple dynamic member stiffness matrix. Such a formulation allows for the distributed mass and coupled shear torsion stiffness of the member and thus necessitates the solution of a transcendental eigenvalue problem. The required natural frequencies are finally determined using a stepped cantilever model in conjunction with the Wittrick Williams algorithm, which ensures that no natural frequencies are missed. When the structure can be represented realistically by a uniform cantilever, solutions can be found easily by hand. A parametric study comprising four, three-dimensional, asymmetric frame structures is given to compare the accuracy of the current approach with that of a full finite element analysis. (c) 2006 Elsevier Inc. All rights reserved.
机译:本文提出了一种整体分析方法,用于计算非对称三维框架结构的固有频率,在该结构中,主框架在两个正交方向上运行,并且其特性可能会在结构的高度上以逐步的方式变化。一层或多层。替代系统的控制微分方程是使用连续方法制定的,并以简单的动态构件刚度矩阵的形式提出。这种表述允许构件的分布质量和耦合的剪切扭转刚度,因此需要解决先验特征值问题。最终,使用阶梯式悬臂模型结合Wittrick Williams算法确定所需的固有频率,从而确保不会遗漏任何固有频率。当可以用一个均匀的悬臂实际地表示结构时,可以很容易地手动找到解决方案。进行了包括四个三维非对称框架结构的参数研究,以比较当前方法的精度与全有限元分析的精度。 (c)2006 Elsevier Inc.保留所有权利。

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