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Numerical investigations in turbomachinery: the state of the art - hardcover

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VKI LS 2009-08, Numerical investigations in turbomachinery: the state of the art, hardcover, 1 volume, ISBN 978-2-930389-96-6.

Numerical investigations in turbomachinery: the state of the art

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Numerical investigations in turbomachinery: the state of the art
Edited by T. Arts, M. Manna
VKI LS 2009-08, hardcover, 1 volume, ISBN 978-2-930389-96-6.

These proceedings are included in the package deal 2009 for sell now! The proceedings out of the package deal promotion will be availble for sell in January 2010.

The conference will take place in September. The proceedings will be published in November.

Abstract

The objective of this Lecture Series notes are to review the latest developments and achievements in the field of computational techniques as applied to turbomachinery flows. Standard and advanced techniques currently used on a routine basis both in the academic and industrial environment are revised, and their merits and shortcoming analyzed on the basis of test problems of practical engineering relevance.

More specifically, this Lecture Series proceedings first address the fundamental aspects and an overview of the techniques with special emphasis on accuracy, grid convergence, robustness, computational cost and ease of implementation. Several notes then review and discuss in details the various aspects of eddy viscosity and Reynolds stress modeling for turbomachinery flows. A special lecture note is also devoted to the challenging issue of transition modeling. Large eddy simulation capabilities in turbomachinery computations are addressed, from a  general as well as from a practical applicability point of view. Finally, the state of the art in unsteady computations in turbomachinery is reviewed.

The Lecture Series proceedings are intended to offer to young researchers entering the turbomachinery field a wide and comprehensive view of the currently available computational tools for the aero-thermal performance prediction of modern systems.

Table of content

HIRSCH, C. - Numeca, Belgium
Fundamentals

DICK, E. - University of Ghent, Belgium
Eddy viscosity models

MOORE, J. - Viriginia Tech, USA
Reynolds stress models

DICK, E. - University of Ghent, Belgium
Transition modeling

SAGAUT, P. - Université Pierre et Marie Curie - Paris 6, France
LES modeling

DUFOUR, G. - Cerfax, France
LES applications

EULITZ, F. - Siemens AG Power Generation, Germany
Unsteady simulations

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Manufacturer von Karman Institute for Fluid Dynamics

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