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Turbulence and Transition Modelling - Lecture Notes from the ERCOFTAC/IUTAM Summerschool held in Stockholm, 12-20 June, 1995... Turbulence and Transition Modelling - Lecture Notes from the ERCOFTAC/IUTAM Summerschool held in Stockholm, 12-20 June, 1995 (Hardcover, 1996 ed.)
M. Hallback, D.S. Henningson, A.V. Johansson, P.H. Alfredsson
R5,651 Discovery Miles 56 510 Ships in 10 - 15 working days

The aim of this book is to give, within a single volume, an introduction to the fields of turbulence modelling and transition-to-turbulence prediction, and to provide the physical background for today's modelling approaches in these problem areas as well as giving a flavour of advanced use of prediction methods. Turbulence modelling approaches, ranging from single-point models based on the eddy-viscosity concept and the Reynolds stress transport equations (Chapters 3,4,5), to large-eddy simulation (LES) techniques (Ch. 7), are covered. The foundations of hydrodynamical stability and transition are presented (Ch. 2) along with transition prediction methods based on single-point closures (Ch. 6), LES techniques (Ch. 7) and the parabolized stability equations (Ch. 8). The book addresses engineers and researchers, in industry or academia, who are entering into the fields of turbulence or transition modelling research or need to apply turbulence or transition prediction methods in their work.

Turbulence and Transition Modelling - Lecture Notes from the ERCOFTAC/IUTAM Summerschool held in Stockholm, 12-20 June, 1995... Turbulence and Transition Modelling - Lecture Notes from the ERCOFTAC/IUTAM Summerschool held in Stockholm, 12-20 June, 1995 (Paperback, Softcover reprint of hardcover 1st ed. 1996)
M. Hallback, D.S. Henningson, A.V. Johansson, P.H. Alfredsson
R5,454 Discovery Miles 54 540 Ships in 10 - 15 working days

The aim of this book is to give, within a single volume, an introduction to the fields of turbulence modelling and transition-to-turbulence prediction, and to provide the physical background for today's modelling approaches in these problem areas as well as giving a flavour of advanced use of prediction methods. Turbulence modelling approaches, ranging from single-point models based on the eddy-viscosity concept and the Reynolds stress transport equations (Chapters 3,4,5), to large-eddy simulation (LES) techniques (Ch. 7), are covered. The foundations of hydrodynamical stability and transition are presented (Ch. 2) along with transition prediction methods based on single-point closures (Ch. 6), LES techniques (Ch. 7) and the parabolized stability equations (Ch. 8). The book addresses engineers and researchers, in industry or academia, who are entering into the fields of turbulence or transition modelling research or need to apply turbulence or transition prediction methods in their work.

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