In this paper, a coupled CFD-CSD method based on N-S equations is described for static aeroelastic correction and jig-shape design of large airliners. The wing structural flexibility matrix is analyzed by a finite element method with a double-beam model. The viscous multi-block structured grid is used in aerodynamic calculations. Flexibility matrix interpolation is fulfilled by use of a surface spline method. The load distributions on wing surface are evaluated by solving N-S equations with a parallel algorithm. A flexibility approach is employed to calculate the structural deformations. By successive iterations between steady aerodynamic forces and structural deformations, a coupled CFD-CSD method is achieved for the static aeroelastic correction and jig-shape design of a large airliner. The present method is applied to the static aeroelastic analysis and jig-shape design for a typical large airliner with engine nacelle and winglet. The numerical results indicate that calculations of static aeroelastic correction should employ tightly coupled CFD-CSD iterations, and that on a given cruise shape only one round of iterative design is needed to obtain the jig-shape meeting design requirements.
[1]
P. Spalart.
A One-Equation Turbulence Model for Aerodynamic Flows
,
1992
.
[2]
Dimitri J. Mavriplis,et al.
On Convergence Acceleration Techniques for Unstructured Meshes
,
1998
.
[3]
Joel H. Saltz,et al.
Implementation of a parallel unstructured Euler solver on shared- and distributed-memory architectures
,
1992,
Supercomputing '92.
[4]
A. Jameson,et al.
Numerical solution of the Euler equations by finite volume methods using Runge Kutta time stepping schemes
,
1981
.
[5]
Yan Xu,et al.
Static aeroelastic analysis of a high-aspect-ratio wing based on wind-tunnel experimental aerodynamic forces
,
2011
.
[6]
Yaokun Wang,et al.
A method for static aeroelastic analysis based on the high-order panel method and modal method
,
2011
.
[7]
LU Zhi-liang.
Generation of Dynamic Grids and Computation of Unsteady Transonic Flows around Assemblies
,
2001
.