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- W2322809230 abstract "A study is undertaken to investigate the relationships between and accuracy of direct and indirect methods in reduced-order nonlinear simulations using linear natural modes as the basis functions. Both methods are applicable to nonlinear thermal post-buckling and dynamic random responses of aerospace structural components such as beams, plates, thin shallow shells subjected to combined thermal, aerodynamic, and random excitations. It is well known that both methods can be used to gain computational efficiency over a full-order simulation in physical degrees-of-freedom. However, they are different in the approach of how to generate the nonlinear stiffness terms. The study is aimed at investigating the similarities and differences between the two methods through their comparison with computationally extensive nonlinear simulation in physical (full-order) degrees-of-freedom. A simply-supported flat plate with very small number of degrees of freedom is used in the investigation. It is found that both methods are capable of performing accurate and efficient reduced-order nonlinear simulations with certain advantages and disadvantages. And whether to keep or neglect in-plane inertia is really the most significant difference in the two methods." @default.
- W2322809230 created "2016-06-24" @default.
- W2322809230 creator A5010423615 @default.
- W2322809230 date "2010-04-12" @default.
- W2322809230 modified "2023-09-24" @default.
- W2322809230 title "A Comparison of Direct and Indirect Method in Reduced-Order Nonlinear Simulation" @default.
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- W2322809230 doi "https://doi.org/10.2514/6.2010-2797" @default.
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