
doi: 10.1063/1.862963
handle: 10919/47640
An analysis is presented of the parallel neutral stability of three-dimensional incompressible, isothermal boundary-layer flows. A Taylor-series expansion of the dispersion relation is used to derive the general eigenvalues. These equations are functions of the complex group velocity. These relations are verified by numerical results obtained for two- and three-dimensional disturbances in two- and three-dimensional flows.
Taylor- series expansion, disturbance, isothermal, neutral stability calculations, numerical, three-dimensional, Boundary-layer theory, separation and reattachment, higher-order effects, disperson relation
Taylor- series expansion, disturbance, isothermal, neutral stability calculations, numerical, three-dimensional, Boundary-layer theory, separation and reattachment, higher-order effects, disperson relation
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