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High speed civil transport: Sonic boom softening and aerodynamic optimizationAn improvement in sonic boom extrapolation techniques has been the desire of aerospace designers for years. This is because the linear acoustic theory developed in the 60's is incapable of predicting the nonlinear phenomenon of shock wave propagation. On the other hand, CFD techniques are too computationally expensive to employ on sonic boom problems. Therefore, this research focused on the development of a fast and accurate sonic boom extrapolation method that solves the Euler equations for axisymmetric flow. This new technique has brought the sonic boom extrapolation techniques up to the standards of the 90's. Parallel computing is a fast growing subject in the field of computer science because of its promising speed. A new optimizer (IIOWA) for the parallel computing environment has been developed and tested for aerodynamic drag minimization. This is a promising method for CFD optimization making use of the computational resources of workstations, which unlike supercomputers can spend most of their time idle. Finally, the OAW concept is attractive because of its overall theoretical performance. In order to fully understand the concept, a wind-tunnel model was built and is currently being tested at NASA Ames Research Center. The CFD calculations performed under this cooperative agreement helped to identify the problem of the flow separation, and also aided the design by optimizing the wing deflection for roll trim.
Document ID
19950004779
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Cheung, Samson
(MCAT Inst. San Jose, CA, United States)
Date Acquired
September 6, 2013
Publication Date
July 1, 1994
Subject Category
Acoustics
Report/Patent Number
MCAT-94-10
NAS 1.26:196397
NASA-CR-196397
Report Number: MCAT-94-10
Report Number: NAS 1.26:196397
Report Number: NASA-CR-196397
Accession Number
95N11192
Funding Number(s)
CONTRACT_GRANT: NCC2-617
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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