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Verification of a Constraint Force Equation Methodology for Modeling Multi-Body Stage Separation
Author(s) -
Paul V. Tartabini,
Carlos M. Roithmayr,
Chris Karlgaard,
Matt Toniolo,
Bandu N. Pamadi
Publication year - 2008
Publication title -
aiaa modeling and simulation technologies conference and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2008-7039
Subject(s) - constraint (computer aided design) , computer science , stage (stratigraphy) , mathematics , geology , geometry , paleontology
This paper discusses the verification of the Constraint Force Equation (CFE) methodology and its implementation in the Program to Optimize Simulated Trajectories II (POST2) for multibody separation problems using three specially designed test cases. The first test case involves two rigid bodies connected by a fixed joint; the second case involves two rigid bodies connected with a universal joint; and the third test case is that of Mach 7 separation of the Hyper-X vehicle. For the first two cases, the POST2/CFE solutions compared well with those obtained using industry standard benchmark codes, namely AUTOLEV and ADAMS. For the Hyper-X case, the POST2/CFE solutions were in reasonable agreement with the flight test data. The CFE implementation in POST2 facilitates the analysis and simulation of stage separation as an integral part of POST2 for seamless end-to-end simulations of launch vehicle trajectories.

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