Coupled analysis of thermo-fluid-flexible multi-body dynamics for a two-dimensional engine nozzle

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Various components in an engine nozzle are modeled as flexible multi-body components which are operated under high temperature and pressure. In this paper, in order to predict complex behavior of an engine nozzle, thermo-fluid-flexible multi-body dynamic coupled analysis framework was developed. Temperature and pressure on the nozzle wall were obtained by the CFD flow analysis for two-dimensional nozzle. The pressure and material properties according to temperature were delivered to DYMORE. Then nonlinear multi-body dynamics analysis was performed. Heat conduction and thermal analyses were conducted by MSC.NASTRAN. The present framework was validated for a simple nozzle configuration by using an one-way coupled analysis. Both-way coupled analysis was also performed for the simple nozzle with an imaginary joint clearance, and an asymmetric flow was observed. Finally, total strain result of a realistic nozzle configuration was obtained by the one-way and both-way coupled analyses.
Publisher
International Center for Numerical Methods in Engineering
Issue Date
2015-06
Language
English
Citation

2015 ECCOMAS Thematic Conference on Multibody Dynamics, Multibody Dynamics 2015, pp.629 - 640

URI
http://hdl.handle.net/10203/313225
Appears in Collection
AE-Conference Papers(학술회의논문)
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