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Vibration analysis of doubly asymmetric, three-dimensional structures comprising wall and frame assemblies with variable cross-section

机译:包含具有可变横截面的墙和框架组件的双重不对称三维结构的振动分析

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摘要

A global analysis approach to modelling doubly asymmetric, three-dimensional, multi-bay, multi-storey, wall-frame structures is presented in a form that enables the lower numbered natural frequencies to be determined approximately with the certain knowledge that none have been missed. It is assumed that the primary walls and frames of the original structure run in two orthogonal directions and that their properties may vary in a step-wise fashion at one or more storey levels. The structure therefore divides naturally into uniform segments between changes of section properties. A typical segment is then replaced by an equivalent shear-flexure-torsion coupled beam whose governing differential equations are formulated using a continuum approach and posed in the form of a dynamic member stiffness matrix. The original structure can then be re-modelled as a sophisticated stepped cantilever in the usual way. Since the mass of each segment is assumed to be uniformly distributed, it is necessary to solve a transcendental eigenvalue problem, which is accomplished using the Wittrick-Williams algorithm. A parametric study on a series of wall-frame structures of varying height with different plan configurations is given to compare the accuracy Of the Current approach with datum results from fully converged finite element analyses. (C) 2008 Elsevier Ltd. All rights reserved.
机译:提出了一种用于建模双不对称,三维,多机架,多层,墙框架结构的全局分析方法,该方法可以在不丢失任何已知知识的前提下,近似确定较低编号的固有频率。假定原始结构的主墙和框架在两个正交方向上运行,并且它们的属性可以在一个或多个楼层上以逐步的方式变化。因此,该结构自然在截面属性的变化之间划分为均匀的段。然后,用等效的剪切-弯曲-扭转耦合梁代替典型的梁,该梁的支配微分方程采用连续介质法制定,并以动态杆体刚度矩阵的形式摆放。然后可以按照通常的方式将原始结构重新建模为复杂的阶梯形悬臂。由于假定每个段的质量是均匀分布的,因此有必要解决先验特征值问题,这是使用Wittrick-Williams算法完成的。对一系列不同高度,不同平面配置的墙框架结构进行了参数研究,以比较“当前”方法与完全收敛的有限元分析得出的基准结果的准确性。 (C)2008 Elsevier Ltd.保留所有权利。

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