Stability of Separating Subsonic Boundary Layers

Stability of Separating Subsonic Boundary Layers
Author: National Aeronautics and Space Adm Nasa
Publisher:
Total Pages: 56
Release: 2018-11-02
Genre:
ISBN: 9781730708305

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The primary and subharmonic instabilities of separating compressible subsonic two-dimensional boundary layers in the presence of a two-dimensional roughness element on a flat plate are investigated. The roughness elements considered are humps and forward- and backward-facing steps. The use of cooling and suction to control these instabilities is studied. The similarities and differences between the instability characteristics of separating boundary layers and those of the boundary layer over a flat plate with a zero pressure gradient are pointed out and discussed. The theoretical results agree qualitatively and quantitatively with the experimental data of Dovgal and Kozlov. Cooling and suction decrease the growth rates of primary and subharmonic waves in the attached-flow regions but increase them in the separated-flow regions. Masad, Jamal A. and Nayfeh, Ali H. Unspecified Center...

The Effects of Boundary Layer Separation Upon Vehicle Stability in the Subsonic and Transonic Flow Regimes - A Review of Recent Literature

The Effects of Boundary Layer Separation Upon Vehicle Stability in the Subsonic and Transonic Flow Regimes - A Review of Recent Literature
Author: Bernard M. Leadon
Publisher:
Total Pages: 56
Release: 1971
Genre:
ISBN:

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The literature relating to vehicle stability was searched for papers in which flow separation from aerodynamic surfaces is explicitly studied. Data were found usually to deal with Magnus forces and moments, roll-yaw coupling, roll lock-in, and similar phenomena of less than obvious origins. Ample justification for detailed examination of boundary layers and of nonlinear equations of motion is offered by these examples since these are vehicle characteristics which are at present unpredictable primarily because three-dimensional boundary layer behavior is not well understood. Some examples of methods of numerical analysis of flight test data which aim at the extraction of the nonlinear coefficients of the equations of motion are cited. Finally, a background of well-established boundary layer theory is presented, and the advances of the past few years are reviewed. (Author).

STAR

STAR
Author:
Publisher:
Total Pages: 1964
Release: 1964
Genre: Aeronautics
ISBN:

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Boundary Layer and Flow Control

Boundary Layer and Flow Control
Author: G. V. Lachmann
Publisher: Elsevier
Total Pages: 768
Release: 2014-05-12
Genre: Technology & Engineering
ISBN: 1483226662

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Boundary Layer and Flow Control: Its Principles and Application, Volume 2 focuses on the layer of fluid in the immediate area of a bounding surface where the effects of viscosity are substantial. This book is organized into two main topics—boundary layer control for low drag, and shock-induced separation and its prevention by design and boundary layer control. It specifically discusses the nature of transition, effect of two-dimensional and isolated roughness on laminar flow, and progress in the design of low drag aerofoils. The onset of separation effects for aerofoils and wings, shock-induced separation for laminar boundary layers, and shock-induced separation for laminar boundary layers are also deliberated. This volume is recommended to physicists and specialists interested in boundary layer and flow control.

The Origin of Turbulence in Near-Wall Flows

The Origin of Turbulence in Near-Wall Flows
Author: A.V. Boiko
Publisher: Springer Science & Business Media
Total Pages: 286
Release: 2002-01-22
Genre: Science
ISBN: 9783540421818

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This book presents a comprehensive survey of the origin of turbulence in near-wall shear layer flows. Instead of going too far into details modern approaches to the problem are discussed in a conceptual treatment. The transition from laminar to turbulent flows in shear layers is described including the generation of flow perturbations, their amplification and development, the breakdown of the initial laminar state, and transformation to a turbulent regime. This book also presents new approaches to boundary-layer transitions with strong external-flow perturbations and to the prediction and control of the presented near-wall transitions to turbulence. This book is addressed to researchers, lecturers and students in engineering, physics and mathematics.