首页> 外文期刊>Journal of Sound and Vibration >APPROXIMATE DETERMINATION OF DISPERSION RELATIONS AND DISPLACEMENT FIELDS ASSOCIATED WITH ELASTIC WAVES IN BARS Method Based on Matrix Formulation of Hamilton's Principle
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APPROXIMATE DETERMINATION OF DISPERSION RELATIONS AND DISPLACEMENT FIELDS ASSOCIATED WITH ELASTIC WAVES IN BARS Method Based on Matrix Formulation of Hamilton's Principle

机译:基于汉密尔顿原理矩阵公式的Bars方法中与弹性波相关的色散关系和位移场的近似确定

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摘要

A method for approximate determination of dispersion relations and displacement fields associated with elastic waves in long prismatic bars is established. The method is based on a matrix formulation of Hamilton's principle and utilizes co-ordinate functions to model the displacements in the bar. The method, which involves the solution of an eigenvalue problem, is suitable for use in a mathematical toolbox. It is applied to wave propagation in bars with square and circular cross-sections. The results obtained agree well with the known exact and approximate solutions. The convergence rate is illustrated by systematically changing the order of the co-ordinate functions.
机译:建立了一种近似确定长棱柱弹性波相关色散关系和位移场的方法。该方法基于汉密尔顿原理的矩阵公式,并利用坐标函数对钢筋中的位移进行建模。该方法涉及特征值问题的解决方案,适用于数学工具箱。它适用于具有正方形和圆形横截面的条形中的波传播。获得的结果与已知的精确解和近似解非常吻合。通过系统地更改坐标函数的顺序来说明收敛速度。

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