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Mathematics of Large Eddy Simulation of Turbulent Flows

Title
Mathematics of Large Eddy Simulation of Turbulent Flows [electronic resource] / by Luigi Carlo Berselli, Traian Iliescu, William J. Layton.
ISBN
9783540263173
Edition
1st ed. 2006.
Publication
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2006.
Physical Description
1 online resource (XVIII, 350 p).
Local Notes
Access is available to the Yale community.
Access and use
Access restricted by licensing agreement.
Summary
Large eddy simulation (LES) is a method of scientific computation seeking to predict the dynamics of organized structures in turbulent flows by approximating local, spatial averages of the flow. Since its birth in 1970, LES has undergone an explosive development and has matured into a highly-developed computational technology. It uses the tools of turbulence theory and the experience gained from practical computation. This book focuses on the mathematical foundations of LES and its models and provides a connection between the powerful tools of applied mathematics, partial differential equations and LES. Thus, it is concerned with fundamental aspects not treated so deeply in the other books in the field, aspects such as well-posedness of the models, their energy balance and the connection to the Leray theory of weak solutions of the Navier-Stokes equations. The authors give a mathematically informed and detailed treatment of an interesting selection of models, focusing on issues connected with understanding and expanding the correctness and universality of LES. This volume offers a useful entry point into the field for PhD students in applied mathematics, computational mathematics and partial differential equations. Non-mathematicians will appreciate it as a reference that introduces them to current tools and advances in the mathematical theory of LES.
Variant and related titles
Springer ENIN.
Other formats
Printed edition:
Printed edition:
Printed edition:
Format
Books / Online
Language
English
Added to Catalog
July 11, 2019
Series
Scientific computation.
Scientific Computation,
Contents
The Navier-Stokes Equations
Eddy Viscosity Models
to Eddy Viscosity Models
Improved Eddy Viscosity Models
Uncertainties in Eddy Viscosity Models and Improved Estimates of Turbulent Flow Functionals
Advanced Models
Basic Criteria for Subfilter-scale Modeling
Closure Based on Wavenumber Asymptotics
Scale Similarity Models
Boundary Conditions
Filtering on Bounded Domains
Near Wall Models in LES
Numerical Tests
Variational Approximation of LES Models
Test Problems for LES.
Citation

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