NASA NTRS · 19930036359
Structural optimization for joined-wing synthesis
Abstract
The differences between fully stressed and minimum-weight joined-wing structures are identified, and these differences are quantified in terms of weight, stress, and direct operating cost. A numerical optimization method and a fully stressed design method are used to design joined-wing structures. Both methods determine the sizes of 204 structural members, satisfying 1020 stress constraints and five buckling constraints. Monotonic splines are shown to be a very effective way of linking spanwise distributions of material to a few design variables. Both linear and nonlinear analyses are employed to formulate the buckling constraints. With a constraint on buckling, the fully stressed design is shown to be very similar to the minimum-weight structure. It is suggested that a fully stressed design method based on nonlinear analysis is adequate for an aircraft optimization study.
Keep this discovery
Explore connections, maps & timelines
Gallman, John W., Kroo, Ilan M.. 1992-01-01. Structural optimization for joined-wing synthesis. https://ntrs.nasa.gov/citations/19930036359
Cite the original work for its findings. Save a collection to share your selection of sources.