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NASA NTRS · 20160001821

Substructure Versus Property-Level Dispersed Modes Calculation

Abstract

This paper calculates the effect of perturbed finite element mass and stiffness values on the eigenvectors and eigenvalues of the finite element model. The structure is perturbed in two ways: at the "subelement" level and at the material property level. In the subelement eigenvalue uncertainty analysis the mass and stiffness of each subelement is perturbed by a factor before being assembled into the global matrices. In the property-level eigenvalue uncertainty analysis all material density and stiffness parameters of the structure are perturbed modified prior to the eigenvalue analysis. The eigenvalue and eigenvector dispersions of each analysis (subelement and property-level) are also calculated using an analytical sensitivity approximation. Two structural models are used to compare these methods: a cantilevered beam model, and a model of the Space Launch System. For each structural model it is shown how well the analytical sensitivity modes approximate the exact modes when the uncertainties are applied at the subelement level and at the property level.

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BibTeXRIS

Stewart, Eric C., Peck, Jeff A., Bush, T. Jason, Fulcher, Clay W.. 2016-01-04. Substructure Versus Property-Level Dispersed Modes Calculation. https://ntrs.nasa.gov/citations/20160001821

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