首页> 外文会议>2002 Engineering Technology Conference on Energy, Feb 4-5, 2002, Houston, Texas >FORCE VIBRATION ANALYSIS OF THICK BEAMS ON TWO PARAMETER ELASTIC FOUNDATION BY FINITE ELEMENT METHOD
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FORCE VIBRATION ANALYSIS OF THICK BEAMS ON TWO PARAMETER ELASTIC FOUNDATION BY FINITE ELEMENT METHOD

机译:两参数弹性地基上厚梁力振动的有限元分析

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In the present work, the free vibration analysis of rectangular cross-section uniform beams on two-parameter elastic foundation, considering shear deformation and rotatory inertia is made by the finite element method. In this analysis, two different thick beam elements are used. The first 4 degrees of freedom thick beam element has two nodes with two degrees of freedom at each node such as transverse displacements and cross-section rotations. In the second beam element, the nodal variables are the transverse displacement, the cross-section rotation and shear deformation. The elastic foundation is idealized as a constant two-parameter model characterized by two moduli, i.e. the Winkler foundation modul us k and the shear foundation modul us k_G In the case k_G=0, this model reduces to the Winkler model, i.e. the elastic foundation is idealized as a constant one-parameter model. Axial displacement of the beam is also considered. Three kinds of end conditions, i.e. simply-supported, clamped-clamped and clamped-free ends are considered in this study. The effects of axial force, foundation stiffness parameters and partial elastic foundation on the natural frequencies of the beam are examined. In this analysis, the vibration calculation results are presented in the tables and their importance in design are discussed. The numerical results obtained from this analysis are compared with the exact or available solutions, wherever possible. Numerical results and comparisons show the effectiveness of the proposed method.
机译:在目前的工作中,考虑了剪切变形和旋转惯性,利用有限元方法对两参数弹性地基上矩形截面均匀梁的自由振动进行了分析。在此分析中,使用了两个不同的厚梁单元。第一个4自由度厚梁单元具有两个节点,每个节点具有两个自由度,例如横向位移和横截面旋转。在第二个梁单元中,节点变量是横向位移,横截面旋转和剪切变形。弹性地基被理想化为一个恒定的两参数模型,其特征在于两个模量,即Winkler基础模量us k和剪切基础模量us k_G在k_G = 0的情况下,该模型简化为Winkler模型,即弹性基础被理想化为恒定的一参数模型。还考虑了梁的轴向位移。这项研究考虑了三种端部条件,即简单支撑的端部,夹紧端和自由端。研究了轴向力,基础刚度参数和部分弹性基础对梁固有频率的影响。在此分析中,表中列出了振动计算结果,并讨论了它们在设计中的重要性。尽可能将通过此分析获得的数值结果与精确或可用的解决方案进行比较。数值结果和比较结果表明了该方法的有效性。

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