Summary: Demonstrates the use of flow visualization to improve understanding of complex flows involving boundary layer separation and transition, vortex generation and turbulence. Also illustrates kinematic concepts in steady and unsteady flows.
"Summary: Demonstrates the use of flow visualization to improve understanding of complex flows involving boundary layer separation and transition, vortex generation and turbulence. Also illustrates kinematic concepts in steady and unsteady flows."@en
"Stephen J. Kline demonstrates the use of flow visualization in solving engineering problems and establishing mathematical models for analysis of flow fields. Explains the kinematic concepts linking visual observations to the velocity field in steady and unsteady flow."@en
"Stephen J. Kline demonstrates the use of flow visualization in solving engineering problems and establishing mathematical models for analysis of flow fields. Explains the kinematic concepts linking visual observations to the velocity field in steady and unsteady flow."
"Stephen J. Kline demonstrates the use of flow visualization in solving engineering problems and establishing mathematical models for analysis of flow fields. Explains the kinematic concepts linking visual observations to the velocity field in steady and unsteady flow."@en
"Demonstrates the use of flow visualization to improve understanding of complex flows involving boundary layer separation and transition, vortex generation and turbulence. Also illustrates kinematic concepts in steady and unsteady flows."@en
"Demonstrates the use of flow visualization to improve understanding of complex flows involving boundary layer separation and transition, vortex generation and turbulence. Also illustrates kinematic concepts in steady and unsteady flows."
"Focusses on flow visualization. Visualization provides significant information on diverse flow phenomena and thus can be of assistance for research, for direct solution of engineering problems, and for teaching."@en
"Exposé des avantages de modèles d'écoulements réguliers, instables et turbulents servant de base à des modèles mathématiques, puis à des calculs d'ingénieurs. Méthodes expérimentales rendant visible la structure de l'écoulement; explication des concepts cinématiques reliant l'observation visuelle aux descriptions schématiques obtenues, aux prédictions permises, enfin à la vérification expérimentale."
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National Committee for Fluid Mechanics Films (U.S.)
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This is a placeholder reference for a Topic entity, related to a WorldCat Entity. Over time, these references will be replaced with persistent URIs to VIAF, FAST, WorldCat, and other Linked Data resources.
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