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Studies of the dynamics of the twin-lift systemA full set of equations of motion for the twin lift system, linearized about a hover trim condition were derived and presented. It is shown that this full set of equations of motion decouples into simpler sets of equations of motion if the aerodynamic coupling derivatives of the helicopters are neglected. One of these decoupled sets of equations of motion (referred to as the planar set) was studied at length. The other decoupled set (referred to as the nonplanar set) is examined here. It is shown that when the geometric configuration of the twin-lift is symmetric that a further decoupling is possible into antisymmetric and symmetric sets of equations. One set of these reduced equations of motion referred to as the antisymmetric set is directly equivalent to the longitudinal motion of a single helicopeter with a sling load. The second set, referred to as the symmetric set corresponds to the rotation of the entire system without load motion. As in the case of the planar symmetric motion, the location of the tether attachment point influences the stability of the nonplanar symmetric mode. The trend is opposite however in the nonplanar case in that an attachment point below the helicopter center of gravity gives a favorable effect on the stability. The effect is not as strong however as the unfavorable effect on the planar symmetric mode.
Document ID
19890004051
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Curtiss, H. C., Jr.
(Princeton Univ. NJ, United States)
Date Acquired
September 5, 2013
Publication Date
October 1, 1988
Subject Category
Aircraft Design, Testing And Performance
Report/Patent Number
NASA-CR-183273
MAE-TR-1840
NAS 1.26:183273
Report Number: NASA-CR-183273
Report Number: MAE-TR-1840
Report Number: NAS 1.26:183273
Accession Number
89N13422
Funding Number(s)
CONTRACT_GRANT: NAG2-244
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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