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Filtering Techniques for Turbulent Flow Simulation

Author: Alvaro A Aldama
Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 1990.
Series: Lecture notes in engineering, 56.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
This monograph presents a theoretical analysis of filtering techniques for turbulent flow simulation. Both space and space-time filtering approaches are considered. The basic characteristics of these techniques are described and contrasted with conventional approaches of turbulence modeling. The mathematical nature of the approximation of the nonlinear terms in the filtered equations of motion is investigated, and  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Alvaro A Aldama
ISBN: 9783642840913 3642840914
OCLC Number: 851380604
Description: 1 online resource (viii, 397 pages 71 illustrations).
Contents: Introduction --
Turbulence Modeling --
Two-Scale Filtering Approach Theory --
Three-Scale Filtering Approach Theory --
Direct Simulations of Periodic Burgers' Flow --
Numerical Experiments with Two-Scale Filtering Approaches Applied to Periodic Burgers' Flow --
Numerical Experiments with Three-Scale Filtering Approach Applied to Periodic Burgers' Flow --
Discussion, Conclusion and Recommendations --
Appendices --
References.
Series Title: Lecture notes in engineering, 56.
Responsibility: by Alvaro A. Aldama.
More information:

Abstract:

This monograph presents a theoretical analysis of filtering techniques for turbulent flow simulation. Both space and space-time filtering approaches are considered. The basic characteristics of these techniques are described and contrasted with conventional approaches of turbulence modeling. The mathematical nature of the approximation of the nonlinear terms in the filtered equations of motion is investigated, and it is shown that those approximations possess an asymptotic nature. The filtering effect in Fourier space is investigated, and a three-scale filtering approach is also presented. Both the space-time and three-scale filtering approaches are numerously tested in the context of random Burgers' flow. Some familiarity with fluid dynamics, turbulence, numerical methods for the solution of partial differential equations, asymptotic expansions and Fourier transforms is expected from the reader. The monograph is intended for researchers and graduate students interested in turbulent flow simulation, and it will be primarily used as a reference.

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