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The role of computerized symbolic manipulation in rotorcraft dynamics analysisThe potential role of symbolic manipulation programs in development and solution of the governing equations for rotorcraft dynamics problems is discussed and illustrated. Nonlinear equations of motion for a helicopter rotor blade represented by a rotating beam are developed making use of the computerized symbolic manipulation program MACSYMA. The use of computerized symbolic manipulation allows the analyst to concentrate on more meaningful tasks, such as establishment of physical assumptions, without being sidetracked by the tedious and trivial details of the algebraic manipulations. Furthermore, the resulting equations can be produced, if necessary, in a format suitable for numerical solution. A perturbation-type solution for the resulting dynamical equations is shown to be possible with a combination of symbolic manipulation and standard numerical techniques. This should ultimately lead to a greater physical understanding of the behavior of the solution than is possible with purely numerical techniques. The perturbation analysis of the flapping motion of a rigid rotor blade in forward flight is presented, for illustrative purposes, via computerized symbolic manipulation with a method that bypasses Floquet theory.
Document ID
19870036184
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Crespo Da Silva, Marcelo R. M.
(Cincinnati, University OH, United States)
Hodges, Dewey H.
(U.S. Army, Army Aeromechanics Laboratory, Moffett Field CA, United States)
Date Acquired
August 13, 2013
Publication Date
January 1, 1986
Publication Information
Publication: Computers and Mathematics with Applications
Volume: 12A
Issue: 1 19
ISSN: 0097-4943
Subject Category
Aircraft Design, Testing And Performance
Accession Number
87A23458
Funding Number(s)
CONTRACT_GRANT: DAAG29-84-G-0041
CONTRACT_GRANT: NAG2-274
Distribution Limits
Public
Copyright
Other

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