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Large eddy simulation and related techniques: theory and applications - hardcover

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VKI LS 2008-04, Large eddy simulation and related techniques: theory and applications, ISBN 978-2-930389-84-2

Large eddy simulation and related techniques: theory and applications

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LARGE EDDY SIMULATION AND RELATED TECHNIQUES: THEORY AND APPLICATIONS
March 10-14, 2008, edited by C. Benocci, J.P.A.J. van Beeck, U. Piomelli
Abstract

Large Eddy Simulation (LES) has reached a level of development and width of application to justify a full course dedicated to this specific topic.

The course encompasses an introduction and discussion of the fundamental principles, state-of-the-art applications and possible developments of LES and LES-related techniques for high Reynolds-number flows. Specific sessions cover the numerical techniques suitable for the implementation of these models.

This presentation is complemented by sessions devoted to the application of these approaches to various fields of interest, namely, biological and atmospheric flows.

The course notes are delivered by internationally recognized experts. Its contents are addressed both to researchers interested in the fundamental simulation of turbulence and to engineers wanting to apply the LES techniques or LES solvers to the accurate simulation of turbulent flows.

Table of content
  • PIOMELLI, U. – University of Maryland, USA
    Large eddy simulation of turbulent flows. Part 1: Introduction
  • SQUIRES, K. D. – Arizona State University, USA
    Detached-eddy simulation of turbulent flows
  • BALARAS, E. - University of Maryland, USA
    Applications of large eddy and direct simulation to biological flows
  • VERZICCO, R. & IACCARINO, G. – Politecnico di Bari, Italy & Stanford University, USA
    Immersed boundary technique for large-eddy simulation
  • HIGGINS, C.1; PARLANGE, M.1; MENEVEAU, C.2; BOU-ZEID, E.1; KUMAR, V.31Ecole Polytechnique Fédérale de Lausanne (EPFL), Switzerland & 2Johns Hopkins University, USA & 3Fremantle Energy, USA
    Field studies and instrumentation to guide the improvement of SGS models
  • HIGGINS, C.1; PARLANGE, M.1; MENEVEAU, C.2; BOU-ZEID, E.1; KUMAR, V.3; CHESTER, S.41Ecole Polytechnique Fédérale de Lausanne (EPFL), Switzerland & 2Johns Hopkins University, USA & 3Fremantle Energy, USA & 4Lockheed Martin, USA
    Simulations in the atmospheric boundary layer

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Manufacturer von Karman Institute for Fluid Dynamics

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