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Aeroelastic Tailoring of Transport Wings Including Transonic Flutter Constraints
Author(s) -
Bret Stanford,
Carol D. Wieseman,
Christine V. Jutte
Publication year - 2015
Publication title -
56th aiaa/asce/ahs/asc structures, structural dynamics, and materials conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2015-1127
Subject(s) - aeroelasticity , transonic , flutter , aerodynamics , wing , aerospace engineering , computer science , structural engineering , engineering
Several minimum-mass optimization problems are solved to evaluate the effectiveness of a variety of novel tailoring schemes for subsonic transport wings. Aeroelastic stress and panel buckling constraints are imposed across several trimmed static maneuver loads, in addition to a transonic flutter margin constraint, captured with aerodynamic influence coefficient-based tools. Tailoring with metallic thickness variations, functionally graded materials, balanced or unbalanced composite laminates, curvilinear tow steering, and distributed trailing edge control effectors are all found to provide reductions in structural wing mass with varying degrees of success. The question as to whether this wing mass reduction will offset the increased manufacturing cost is left unresolved for each case.

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