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Prediction and Validation of Mars Pathfinder Hypersonic Aerodynamic Database
Author(s) -
Peter A. Gnoffo,
Robert D. Braun,
K. James Weilmuenster,
Robert Mitcheltree,
Walter C. Engelund,
Richard W. Powell
Publication year - 1999
Publication title -
journal of spacecraft and rockets
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.758
H-Index - 79
eISSN - 1533-6794
pISSN - 0022-4650
DOI - 10.2514/2.3455
Subject(s) - aerospace engineering , spacecraft , pathfinder , mars exploration program , hypersonic speed , aerodynamics , missile , spacecraft design , systems engineering , space shuttle , computer science , space exploration , exploration of mars , space (punctuation) , aeronautics , engineering , astrobiology , physics , library science , operating system
Postflight analysis of the Mars Pathfinder hypersonic, continuum aerodynamic data base is presented. Measured data include accelerations along the body axis and axis normal directions. Comparisons of preflight simulation and measurements show good agreement. The prediction of two static instabilities associated with movement of the sonic line from the shoulder to the nose and back was confirmed by measured normal accelerations. Reconstruction of atmospheric density during entry has an uncertainty directly proportional to the uncertainty in the predicted axial coefficient. The sensitivity of the moment coefficient to freestream density, kinetic models and center-of-gravity location are examined to provide additional consistency checks of the simulation with flight data. The atmospheric density as derived from axial coefficient and measured axial accelerations falls within the range required for sonic line shift and static stability transition as independently determined from normal accelerations.

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