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Free vibration analysis of non-axisymmetric and axisymmetric structures by the dual reciprocity BEM

机译:双向往复边界元法分析非轴对称和轴对称结构的自由振动

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The dual reciprocity boundary element method (DR/BEM ) is employed for the free vibration analysis of three-dimensional non- axisymmetric and axisymmetric elastic solids. The method uses the elastostalic fundamental solution in the integral formulation of elasto- dynamics and as a result of that. an inertial volume integral is created in addition to the boundary ones. This volume integral is transformed into a surface integral by invoking the reciprocal theorem and expanding of the displacement field into a series involving seven different approximation functions. The approximation functions used are local radial basis functions (RBFs) and are applied in combination (or not) with global basis functions (augmentation ). All these functions are compared in terms of the accuracy they provide. The axisymmetric case is efficiently treated with the aid of the fast Fourier transform (FFT) algorithm in order to provide even non-axisymmetric vibration modes. Two representative numerical examples involving the determination of natural frequencies and modal shapes of an elastic cube and an elastic cylinder serve to investigate in detail the potentiality of each of the seven approximation functions tested to provide results of high accuracy and to reach useful practical conclusions.
机译:采用双向互易边界元方法(DR / BEM)对三维非轴对称和轴对称弹性固体进行自由振动分析。该方法在弹性动力学的整体表述中使用了弹性基本解,因此。除了边界量外,还创建了一个惯性量积分。通过调用互易定理并将位移场扩展为包含七个不同逼近函数的级数,可以将该体积积分转换为表面积分。所使用的近似函数是局部径向基函数(RBF),并且与全局基函数(增强)结合(或不结合)应用。所有这些功能均按其提供的准确性进行了比较。轴对称情况可以通过快速傅立叶变换(FFT)算法得到有效处理,以提供均匀的非轴对称振动模式。涉及确定弹性立方体和弹性圆柱的固有频率和模态形状的两个代表性数值示例用于详细研究所测试的七个近似函数中每个函数的潜力,以提供高精度结果并得出有用的实用结论。

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