Development of perturbations in the boundary layer
Aleksandr V. Dovgal, Yury S. Kachanov, Viktor V. Kozlov, V. Ya. Levchenko, Vladimir Petrovich Maksimov
Abstract
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Aleksandr V. Dovgal, Yury S. Kachanov, Viktor V. Kozlov, V. Ya. Levchenko, Vladimir Petrovich Maksimov
Abstract
Open-access reader
The transition of laminar flows into turbulent flows in a boundary layer is discussed. The individual aspects of the transition process, observed under controllable model conditions are examined. The aspect of this problem, namely the development or excitation of the natural oscillations in the boundary layer, the so-called Tollmin-Schlichting waves is covered. Three types of excitation of these waves are considered: (1) distributed generation throughout the boundary layer; (2) generation in the vicinity of the forward edge of a model, having either a sharp edge or an edge with a large radius or curvature, and (3) generation in a developed boundary layer by means of a focused effect.
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The transition of laminar flows into turbulent flows in a boundary layer is discussed. The individual aspects of the transition process, observed under controllable model conditions are examined. The aspect of this problem, namely the development or excitation of the natural oscillations in the boundary layer, the so-called Tollmin-Schlichting waves is covered. Three types of excitation of these waves are considered: (1) distributed generation throughout the boundary layer; (2) generation in the vicinity of the forward edge of a model, having either a sharp edge or an edge with a large radius or curvature, and (3) generation in a developed boundary layer by means of a focused effect.
Key concepts: Boundary layer, Blasius boundary layer, Laminar flow, Curvature, Boundary (topology), Enhanced Data Rates for GSM Evolution, Boundary layer control, Mechanics