NASA NTRS ยท 19720033242
A discrete variable approximation to minimum weight panel designs subject to a supersonic flutter-speed constraint.
Abstract
A numerical technique is presented that determines the minimum-weight thickness distribution for a one-dimensional, simply supported panel subjected to a parallel supersonic flow on one side. An aeroelastic eigenvalue, which characterizes flutter speed, is held constant. The governing differential equations are approximated by sets of difference equations adjoined to the weight function via a penalty function. A conjugate gradient method then solves the resulting sequence of unconstrained minimization problems. Numerical results are obtained without imposing a minimum thickness constraint; the effect of constant inplane tensile and compressive stresses is also investigated.
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Pierson, B. L.. 1972-01-01. A discrete variable approximation to minimum weight panel designs subject to a supersonic flutter-speed constraint.. https://ntrs.nasa.gov/citations/19720033242
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