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  4. AMG in TAU: Adjoint equations and mesh deformation
 
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2013
Conference Paper
Title

AMG in TAU: Adjoint equations and mesh deformation

Abstract
Dealing with aerodynamic and aeroelastic tasks typically involves large and ill conditioned linear systems of equations. Usually the solution of these equations is a time critical component of the overall simulation. While common one-level solution techniques tend to be rather inefficient, the appliance of a hierarchical method like algebraic multigrid (AMG) seems to be more promising in order to deal with the increasing demands for the linear solver. However, due to various sources of stiffness within the discretized problem, applying AMG in a straightforward way is not always possible. In the context of ComFliTe, the usage of classical AMG was evaluated for mesh deformation applications based on linear elasticity. For the solution of flow adjoint equations new and more sophisticated AMG methods were developed. All approaches have been integrated into the state-of-the-art linear solver library SAMG. The following report describes the modified algorithms utilizing AMG and summarizes the results obtained within the DLR simulation codes throughout the project.
Author(s)
Förster, M.
Pal, A.
Mainwork
Computational flight testing. Results of the closing symposium of the German Research Initiative ComFliTe 2012  
Conference
German Research Initiative ComFliTe (Closing Symposium) 2012  
DOI
10.1007/978-3-642-38877-4_1
Language
English
Fraunhofer-Institut für Algorithmen und Wissenschaftliches Rechnen SCAI  
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