DocumentCode
539490
Title
Transonic Aeroelastic Software and Its Engineering Application
Author
Han, Tonglai ; Li, Rong
Author_Institution
Sch. of power & Energy, Northwestern Polytech. Univ., Xi´´an, China
Volume
1
fYear
2010
fDate
19-20 Dec. 2010
Firstpage
163
Lastpage
171
Abstract
Due to the highly nonlinear characteristics of transonic flows, transonic aero elasticity cannot be predicted by the traditional linear flow solver coupled with the linear structure equation. Therefore, in the paper, a software package for the transonic aero elasticity with direct CFD/CSD coupling solution was developed. In this software, the flow fields are calculated in parallel by the unsteady Reynolds averaged Navier-Stokes equations. The structural deformations for flutter and static aeroelastcity are calculated with the generalized equation of structural motion and the structural static balance equation, respectively. Data transformations between the fluid and structure are interpolated by the radial basis function (RBF) and the principle of virtual work. Dynamic grid deformations are realized with the spring network method based on tetrahedral background grid. In order to improve computational efficiency of direct CFD/CSD coupling calculation, the reduced order models (ROM) of autoregressive moving average model (ARMA) is investigated and embeded in the software. In addition, static aeroelastic optimization based on the response surface model (RSM) is also studied and embeded in. Finally, some examples are presented for the validation of the implementation of the developed software.
Keywords
Navier-Stokes equations; autoregressive moving average processes; computational fluid dynamics; elasticity; interpolation; radial basis function networks; response surface methodology; transonic flow; CFD coupling solution; CSD coupling solution; autoregressive moving average model; data transformation; dynamic grid deformation; engineering application; flow field; flutter; interpolation; nonlinear characteristics; radial basis function; reduced order model; response surface model; software package; spring network method; static aeroelastcity; static aeroelastic optimization; structural deformation; structural motion; structural static balance equation; tetrahedral background grid; transonic aeroelastic software; transonic flows; unsteady Reynolds averaged Navier-Stokes equation; virtual work; Aerodynamics; Autoregressive processes; Computational fluid dynamics; Computational modeling; Mathematical model; Software; CFD/CSD; flutter; reduced order models (ROM); response surface model (RSM); software; static aeroelasticity;
fLanguage
English
Publisher
ieee
Conference_Titel
Software Engineering (WCSE), 2010 Second World Congress on
Conference_Location
Wuhan
Print_ISBN
978-1-4244-9287-9
Type
conf
DOI
10.1109/WCSE.2010.154
Filename
5718287
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