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TDLM: A Transonic Doublet Lattice Method for 3D Potential Unsteady Transonic FlowCalculation

机译:TDLm:三维电位非定常跨音速流量计算的跨音速双晶格方法

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The develoompent of a Transonic Doublet Lattice Method (TDLM) for calculatingunsteady transonic pressure distributions and airloads is reported. The flow around harmonically oscillating surfaces is described by superposition of a steady transonic ocean flow and an unsteady harmonic flow. The unsteady flow component is modeled by acceleration potential doublets in the mean wing surface and a source distribution in the flow field near the wing. The time linearized unsteady transonic small perturbation equation is solved by an integral equation method. Results for a rectangular wing, the Northrop F-5 wing, and the LANN wing in pitching oscillation are presented. Comparisons are made with both experimental and other numerical results. Agreement with the experimental results is very good. The computing time in the IBM 3090 is less than ten minutes for one reduced frequency, and it shows that the TDLM can provide a sufficiently accurate and cost effective procedure for routine transonic flutter calculations.

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