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The Effect of Basis Selection on Thermal-Acoustic Random Response Prediction Using Nonlinear Modal Simulation

机译:基于非线性模态仿真的基础选择对热声随机响应预测的影响

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摘要

The goal of this investigation is to further develop nonlinear modal numerical simulation methods for prediction of geometrically nonlinear response due to combined thermal-acoustic loadings. As with any such method, the accuracy of the solution is dictated by the selection of the modal basis, through which the nonlinear modal stiffness is determined. In this study, a suite of available bases are considered including (i) bending modes only; (ii) coupled bending and companion modes; (iii) uncoupled bending and companion modes; and (iv) bending and membrane modes. Comparison of these solutions with numerical simulation in physical degrees-of-freedom indicates that inclusion of any membrane mode variants (ii - iv) in the basis affects the bending displacement and stress response predictions. The most significant effect is on the membrane displacement, where it is shown that only the type (iv) basis accurately predicts its behavior. Results are presented for beam and plate structures in the thermally pre-buckled regime.
机译:这项研究的目的是进一步开发非线性模态数值模拟方法,以预测由于组合的热声载荷而引起的几何非线性响应。与任何此类方法一样,求解的精度取决于模态基础的选择,通过该模态基础可以确定非线性模态刚度。在这项研究中,考虑了一组可用的基础,其中包括:(i)仅弯曲模式; (ii)耦合的弯曲模式和伴随模式; (iii)非耦合的弯曲模式和伴随模式; (iv)弯曲和膜模式。这些解决方案与物理自由度数值模拟的比较表明,在基础中包含任何膜模式变量(ii-iv)都会影响弯曲位移和应力响应预测。最显着的影响是对膜的位移,表明只有(iv)类型的基础才能准确预测其行为。给出了在热预屈曲状态下梁和板结构的结果。

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