Nonlinear flutter analysis of composite panels

Nonlinear panel flutter is an interesting subject of fluid–structure interaction. In this paper, nonlinear flutter characteristics of curved composite panels are studied in very low supersonic flow. The composite panel with geometric nonlinearity is modeled by a nonlinear finite element method; and...

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Published inModern physics letters. B, Condensed matter physics, statistical physics, applied physics Vol. 32; no. 12n13; p. 1840043
Main Authors An, Xiaomin, Wang, Yan
Format Journal Article
LanguageEnglish
Published Singapore World Scientific Publishing Company 10.05.2018
World Scientific Publishing Co. Pte., Ltd
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ISSN0217-9849
1793-6640
DOI10.1142/S0217984918400432

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Abstract Nonlinear panel flutter is an interesting subject of fluid–structure interaction. In this paper, nonlinear flutter characteristics of curved composite panels are studied in very low supersonic flow. The composite panel with geometric nonlinearity is modeled by a nonlinear finite element method; and the responses are computed by the nonlinear Newmark algorithm. An unsteady aerodynamic solver, which contains a flux splitting scheme and dual time marching technology, is employed in calculating the unsteady pressure of the motion of the panel. Based on a half-step staggered coupled solution, the aeroelastic responses of two composite panels with different radius of R = 5 and R = 2.5 are computed and compared with each other at different dynamic pressure for Ma = 1.05. The nonlinear flutter characteristics comprising limited cycle oscillations and chaos are analyzed and discussed.
AbstractList Nonlinear panel flutter is an interesting subject of fluid–structure interaction. In this paper, nonlinear flutter characteristics of curved composite panels are studied in very low supersonic flow. The composite panel with geometric nonlinearity is modeled by a nonlinear finite element method; and the responses are computed by the nonlinear Newmark algorithm. An unsteady aerodynamic solver, which contains a flux splitting scheme and dual time marching technology, is employed in calculating the unsteady pressure of the motion of the panel. Based on a half-step staggered coupled solution, the aeroelastic responses of two composite panels with different radius of R = 5 and R = 2.5 are computed and compared with each other at different dynamic pressure for Ma = 1.05. The nonlinear flutter characteristics comprising limited cycle oscillations and chaos are analyzed and discussed.
Author An, Xiaomin
Wang, Yan
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CitedBy_id crossref_primary_10_1002_pssr_202400165
crossref_primary_10_1007_s00419_024_02603_8
crossref_primary_10_1016_j_tws_2025_113132
Cites_doi 10.1006/jfls.2000.0434
10.2514/1.39580
10.1016/j.jfluidstructs.2015.05.005
10.2514/3.5124
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nonlinear panel flutter
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Snippet Nonlinear panel flutter is an interesting subject of fluid–structure interaction. In this paper, nonlinear flutter characteristics of curved composite panels...
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SubjectTerms Aeroelasticity
Applications of Fluid Mechanics
Computation
Curved panels
Dynamic pressure
Finite element method
Flutter analysis
Geometric nonlinearity
Nonlinear analysis
Nonlinear programming
Panel flutter
Supersonic aircraft
Supersonic flow
Time marching
Vibration
Title Nonlinear flutter analysis of composite panels
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