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首页> 外文期刊>International journal of non-linear mechanics >A momentum subspace method for the model-order reduction in nonlinear structural dynamics: Theory and experiments
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A momentum subspace method for the model-order reduction in nonlinear structural dynamics: Theory and experiments

机译:动量子空间方法用于非线性结构动力学模型降阶:理论与实验

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The article proposes a method developed for model order reduction in a Finite Element (FE) framework that is capable of computing higher order stiffness tensors. In the method, a truncated third order asymptotic expansion is used for transformation of an FE model to a reduced system. The basis matrix in the formulation of the reduced-order model (ROM) is derived from linear mode shapes of the structure. The governing equations are derived using Hamilton's principle and the method is applied to geometrically nonlinear vibration problems to test its effectiveness. An initial validation of the numerical formulation is obtained by comparison of results from time domain nonlinear vibration analyses of a rectangular plate using Abaqus. Subsequently, a stiffened plate is modeled to test a more complex structure and a continuation algorithm is used in combination with the ROM to compute nonlinear frequency response curves. The validation of the stiffened plate has been performed through comparisons with the results of nonlinear vibration experiments. The experiments are conducted with Polytec Laser Doppler Vibrometer and PAK MK-II measurement systems for large amplitude vibrations to validate the nonlinear vibration analyses.
机译:本文提出了一种为有限元(FE)框架中模型降阶而开发的方法,该方法能够计算高阶刚度张量。在该方法中,将截断的三阶渐近展开用于将FE模型转换为简化系统。降阶模型(ROM)公式中的基本矩阵是从结构的线性模式形状导出的。利用汉密尔顿原理导出控制方程,并将该方法应用于几何非线性振动问题以测试其有效性。通过使用Abaqus比较矩形板的时域非线性振动分析结果,可以得到数值公式的初步验证。随后,对加劲板进行建模以测试更复杂的结构,并且将连续算法与ROM结合使用以计算非线性频率响应曲线。通过与非线性振动实验的结果进行比较,对加劲板进行了验证。实验是使用Polytec激光多普勒振动计和PAK MK-II测量系统对大振幅振动进行的,以验证非线性振动分析。

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