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Boundary layer flow over elastic surfaces and combined method of drag reduction /

While other methods of drag reduction are well-known in marine R & D and ship design environments worldwide, compliant coating drag reduction remains less well-known and poorly understood. This book presents cutting-edge techniques and findings from research sources not generally accessible by W...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Babenko, Viktor V. (Autor), Chun, Ho Hwan (Autor), Lee, Inwon (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Waltham, Mass. : Elsevier, 2012.
Edición:First edition.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Front Cover; Boundary Layer Flow over Elastic Surfaces and Combined Method of Drag Reduction; Copyright Page; Contents; Preface; List of Symbols; Indices; Lower; Upper; Abbreviations; 1 Interaction of the Free Stream with an Elastic Surface; 1.1 Introductory Remarks; 1.2 Basic Types of Coherent Vortical Structures arising in the Flow about a Body, and Methods of their Control; 1.2.1 CVS Types; CVSs in a Boundary Layer; CVSs in the Flow over a Curvilinear Surface; CVSs Generated in Cavities on a Body Surface; Transversal CVSs; Longitudinal CVSs; Tornado-shaped CVSs.
  • CVSs Generated in Front of or behind an ObstacleTransversal CVSs; Longitudinal CVSs; CVS at Corners of a Body; CVSs in Longitudinal Flow about a Body; CVSs in Flows about Wings; Flow about a Profile at an Angle of Attack; CVSs at Tips of Obstacles and Wings; CVSs on a Triangular Wing; CVSs behind an Oscillating Wing; CVSs in the Flow between Lattices of Profiles; CVS about High-drag Bodies; CVS Generated in Internal Flows; CVS on Boundaries of Submerged or Near-wall Jets; CVSs at Non-stationary (Forward, Rotary) Movement of a Body; CVSs in Geophysical Problems; 1.2.2 Methods of CVS Control.
  • Methods of CVS Control in a Boundary LayerMethods of CVS Control on Curvilinear Surfaces; Methods of CVS Control in Cavities; Methods of Controlling CVSs Generated behind a Prominence; Methods of CVS Control in Corners; CVS Control Methods in Longitudinal Flow about a Body; Methods of Controlling CVSs Arising at Flows on Wings; Methods of CVS control for flow about a profile at an angle of attack; CVS control on the ends of ledges and wings; CVS Control on a Triangular Wing; CVS Control by means of a Fluctuating Wing; Methods of CVS Control on High-drag Bodies.
  • Methods of CVS Control in Internal FlowsMethods of CVS Control in Submerged and Near-wall Jets; 1.3 Coherent Structures in a Turbulent Boundary Layer; 1.4 The Flow over Elastic Surfaces; 1.5 Experimental Studies on the Characteristics of Elastic Plates; 1.6 Experimental Investigations of Coherent Vortical Structures in a Transitional Boundary Layer on the Flow over a Rigid Plate; 1.7 Distribution of Disturbing Movement across the Thickness of a Laminar Boundary Layer over a Rigid Surface; 1.8 Physical Process of Laminar-Turbulent Transition of a Boundary Layer over a Rigid Plate.
  • 1.9 Hydrobionic Principles of Drag Reduction1.10 Experimental Investigation of Coherent Vortical Structures in a Transitional Boundary Layer over an Elastic Plate; 1.11 Distribution of Disturbing Movement on the Thickness of a Laminar Boundary Layer on an Elastic Surface; 1.12 Receptivity of the Boundary Layer to Different Disturbances; 1.13 The Boundary Layer as a Heterogeneous, Asymmetric Wave-Guide; 1.14 Control Methods of the CVSs of a Boundary Layer; 1.14.1 Experimental Investigation of a Flow of the Localized Hollows.