(U) Physical Models for Supersonic Turbulent Boundary Layer Structure
Title | (U) Physical Models for Supersonic Turbulent Boundary Layer Structure PDF eBook |
Author | Alexander J. Smits |
Publisher | |
Pages | 62 |
Release | 1989 |
Genre | Boundary layer |
ISBN |
Shock Wave-Boundary-Layer Interactions
Title | Shock Wave-Boundary-Layer Interactions PDF eBook |
Author | Holger Babinsky |
Publisher | Cambridge University Press |
Pages | 481 |
Release | 2011-09-12 |
Genre | Technology & Engineering |
ISBN | 1139498649 |
Shock wave-boundary-layer interaction (SBLI) is a fundamental phenomenon in gas dynamics that is observed in many practical situations, ranging from transonic aircraft wings to hypersonic vehicles and engines. SBLIs have the potential to pose serious problems in a flowfield; hence they often prove to be a critical - or even design limiting - issue for many aerospace applications. This is the first book devoted solely to a comprehensive, state-of-the-art explanation of this phenomenon. It includes a description of the basic fluid mechanics of SBLIs plus contributions from leading international experts who share their insight into their physics and the impact they have in practical flow situations. This book is for practitioners and graduate students in aerodynamics who wish to familiarize themselves with all aspects of SBLI flows. It is a valuable resource for specialists because it compiles experimental, computational and theoretical knowledge in one place.
Scientific and Technical Aerospace Reports
Title | Scientific and Technical Aerospace Reports PDF eBook |
Author | |
Publisher | |
Pages | 704 |
Release | 1995 |
Genre | Aeronautics |
ISBN |
Turbulent Shear Layers in Supersonic Flow
Title | Turbulent Shear Layers in Supersonic Flow PDF eBook |
Author | Alexander J. Smits |
Publisher | Springer Science & Business Media |
Pages | 418 |
Release | 2006-05-11 |
Genre | Science |
ISBN | 0387263055 |
A good understanding of turbulent compressible flows is essential to the design and operation of high-speed vehicles. Such flows occur, for example, in the external flow over the surfaces of supersonic aircraft, and in the internal flow through the engines. Our ability to predict the aerodynamic lift, drag, propulsion and maneuverability of high-speed vehicles is crucially dependent on our knowledge of turbulent shear layers, and our understanding of their behavior in the presence of shock waves and regions of changing pressure. Turbulent Shear Layers in Supersonic Flow provides a comprehensive introduction to the field, and helps provide a basis for future work in this area. Wherever possible we use the available experimental work, and the results from numerical simulations to illustrate and develop a physical understanding of turbulent compressible flows.
The Structure of High Reynolds Number Turbulent Boundary Layers
Title | The Structure of High Reynolds Number Turbulent Boundary Layers PDF eBook |
Author | Alexander J. Smits |
Publisher | |
Pages | 50 |
Release | 1993 |
Genre | Reynolds number |
ISBN |
Ten Chapters in Turbulence
Title | Ten Chapters in Turbulence PDF eBook |
Author | Peter A. Davidson |
Publisher | Cambridge University Press |
Pages | 450 |
Release | 2013 |
Genre | Science |
ISBN | 0521769442 |
Leading experts summarize our current understanding of the fundamental nature of turbulence, covering a wide range of topics.
Turbulence Models and Their Application
Title | Turbulence Models and Their Application PDF eBook |
Author | Tuncer Cebeci |
Publisher | Springer Science & Business Media |
Pages | 140 |
Release | 2003-12-04 |
Genre | Science |
ISBN | 9783540402886 |
After a brief review of the more popular turbulence models, the author presents and discusses accurate and efficient numerical methods for solving the boundary-layer equations with turbulence models based on algebraic formulas (mixing length, eddy viscosity) or partial-differential transport equations. A computer program employing the Cebeci-Smith model and the k-e model for obtaining the solution of two-dimensional incompressible turbulent flows without separation is discussed in detail and is presented in the accompanying CD.