APPLICATION OF PROBABILITY METHODS TO ASSESS CRASH MODELING UNCERTAINTY

VFS-F59-000085

5/6/2003

Authors
Abstract
Content

Full-scale aircraft crash simulations performed with nonlinear, transient dynamic, finite element codes can incorporate structural complexities such as: geometrically accurate models; human occupant models; and advanced material models to include nonlinear stress-strain behaviors, and material failure. Validation of these crash simulations is difficult due to a lack of sufficient information to adequately determine the uncertainty in the experimental data and the appropriateness of modeling assumptions. This paper evaluates probabilistic approaches to quantify the effects of finite element modeling assumptions on the predicted responses. The vertical drop test of a Fokker F28 fuselage section will be the focus of this paper. The results of a probabilistic analysis using finite element simulations will be compared with experimental data.

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DOI
https://doi.org/10.4050/VFS-F59-000085
Citation
Hardy, R., Lyle, K., and Stockwell, A., "APPLICATION OF PROBABILITY METHODS TO ASSESS CRASH MODELING UNCERTAINTY," Forum 59 - Phoenix, AZ 2003, Phoenix, AZ, May 6, 2003, https://doi.org/10.4050/VFS-F59-000085.
Additional Details
Publisher
Published
5/6/2003
Product Code
VFS-F59-000085
Content Type
Technical Paper
Language
English