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Navier-Stokes Computations of Longitudinal Forces and Moments for a Blended Wing Body

Authors :
Pao, S. Paul
Biedron, Robert T
Park, Michael A
Fremaux, C. Michael
Vicroy, Dan D
Publication Year :
2004
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2004.

Abstract

The object of this paper is to investigate the feasibility of applying CFD methods to aerodynamic analyses for aircraft stability and control. The integrated aerodynamic parameters used in stability and control, however, are not necessarily those extensively validated in the state of the art CFD technology. Hence, an exploratory study of such applications and the comparison of the solutions to available experimental data will help to assess the validity of the current computation methods. In addition, this study will also examine issues related to wind tunnel measurements such as measurement uncertainty and support interference effects. Several sets of experimental data from the NASA Langley 14x22-Foot Subsonic Tunnel and the National Transonic Facility are presented. Two Navier-Stokes flow solvers, one using structured meshes and the other unstructured meshes, were used to compute longitudinal static stability derivatives for an advanced Blended Wing Body configuration over a wide range of angles of attack. The computations were performed for two different Reynolds numbers and the resulting forces and moments are compared with the above mentioned wind tunnel data.

Details

Language :
English
Database :
NASA Technical Reports
Notes :
23-762-45-AE
Publication Type :
Report
Accession number :
edsnas.20050041825
Document Type :
Report