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Supersonic Pitch Damping Predictions of Blunt Entry Vehicles from Static CFD SolutionsA technique for predicting supersonic pitch damping of blunt axisymmetric bodies from static CFD data is presented. The contributions to static pitching moment due to forebody and aftbody pressure distributions are broken out and considered separately. The one-dimension moment equation is cast to model the separate contributions from forebody and aftbody pressures with no traditional damping term included. The aftbody contribution to pitching moment is lagged by a phase angle of the natural oscillation period. This lag represents the time for aftbody wake structures to equilibrate while the body is oscillation. The characteristic equation of this formulation indicates that the lagged backshell moment adds a damping moment equivalent in form to a constant pitch damping term. CFD calculations of the backshell's contribution to the static pitching moment for a range of angles-of-attack is used to predict pitch damping coefficients. These predictions are compared with ballistic range data taken of the Mars Exploration Rover (MER) capsule and forced oscillation data of the Mars Viking capsule. The lag model appears to capture dynamic stability variation due to backshell geometry as well as Mach number.
Document ID
20130003227
Acquisition Source
Langley Research Center
Document Type
Conference Paper
Authors
Schoenenberger, Mark
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
August 27, 2013
Publication Date
January 7, 2013
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
AIAA Paper 2013-0356
NF1676L-14867
Report Number: AIAA Paper 2013-0356
Report Number: NF1676L-14867
Meeting Information
Meeting: 51st AIAA Aerospace Sciences Meeting
Location: Grapevine, TX
Country: United States
Start Date: January 7, 2013
End Date: January 10, 2013
Sponsors: American Inst. of Aeronautics and Astronautics
Funding Number(s)
WBS: WBS 857464.02.07.08
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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