NASA NTRS · 19920076743
Supersonic airplane design optimization method for aerodynamic performance and low sonic boom
Abstract
This paper presents a new methodology for the optimization of supersonic airplane designs to meet the dual design objectives of low sonic boom and high aerodynamic performance. Two sets of design parameters are used on an existing High Speed Civil Transport (HSCT) configuration to maximize the aerodynamic performance and minimize the sonic boom under the flight track. One set of the parameters perturbs the camber line of the wing sections to maximize the lift-over-drag ratio (L/D). A preliminary optimization run yielded a 3.75 percent improvement in L/D over a baseline low-boom configuration. The other set of parameters modifies the fuselage area to achieve a target F-function. Starting from an initial configuration with strong bow, wing, and tail shocks, a modified design with a flat-top signature is obtained. The methods presented can easily incorporate other design variables and objective functions. Extensions to the present capability in progress are described.
Keep this discovery
Explore connections, maps & timelines
Cheung, Samson H., Edwards, Thomas A.. 1992-10-01. Supersonic airplane design optimization method for aerodynamic performance and low sonic boom. https://ntrs.nasa.gov/citations/19920076743
Cite the original work for its findings. Save a collection to share your selection of sources.