Elements of Direct and Large eddy Simulation

Elements of Direct and Large eddy Simulation
Author: Bernard Geurts
Publsiher: R.T. Edwards, Inc.
Total Pages: 0
Release: 2004
Genre: Eddies
ISBN: 1930217072

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Geurts (U. of Twente) explains direct and large-eddy simulations of turbulent flow, focusing on how to capture the primary features of unsteady flow through computation rather than on a complete statistical modeling. The approach incorporates elements of numerical and mathematical-physical modeling.

Direct and Large Eddy Simulation

Direct and Large Eddy Simulation
Author: Maria Vittoria Salvetti,Jochen Fröhlich,Bernard J. Geurts,J. G. M. Kuerten
Publsiher: Unknown
Total Pages: 135
Release: 2018
Genre: Electronic Book
ISBN: OCLC:1164607881

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Direct and Large Eddy Simulation

Direct and Large Eddy Simulation
Author: Bernard J. Geurts
Publsiher: Walter de Gruyter GmbH & Co KG
Total Pages: 343
Release: 2022-12-05
Genre: Mathematics
ISBN: 9783110531824

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This book presents a comprehensive overview of the mathematics and physics behind the simulation of turbulent flows and discusses in detail (i) the phenomenology of turbulence in fluid dynamics, (ii) the role of direct and large-eddy simulation in predicting these dynamics, (iii) the multiple considerations underpinning subgrid modelling, and, (iv) the issue of validation and reliability resulting from interacting modelling and numerical errors.

Direct and Large Eddy Simulation VI

Direct and Large Eddy Simulation VI
Author: E. Lamballais,Rainer Friedrich,Bernard J. Geurts,Olivier Métais
Publsiher: Springer Science & Business Media
Total Pages: 783
Release: 2006-10-19
Genre: Technology & Engineering
ISBN: 9781402051524

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The sixth ERCOFTAC Workshop on ‘Direct and Large-Eddy Simulation’ (DLES-6) was held at the University of Poitiers from September 12-14, 2005. Following the tradition of previous workshops in the DLES-series, this edition has reflected the state-of-the-art of numerical simulation of transitional and turbulent flows and provided an active forum for discussion of recent developments in simulation techniques and understanding of flow physics.

Direct and Large Eddy Simulation IV

Direct and Large Eddy Simulation IV
Author: Bernard Geurts,Rainer Friedrich,Olivier Métais
Publsiher: Springer Science & Business Media
Total Pages: 543
Release: 2013-06-29
Genre: Technology & Engineering
ISBN: 9789401712637

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This volume contains the proceedings of the 2001 DLES4 workshop. It describes and discusses state-of-the-art modeling and simulation approaches for complex flows. Fundamental turbulence and modeling issues but also elements from modern numerical analysis are at the heart of this field of interest.

Direct and Large Eddy Simulation I

Direct and Large Eddy Simulation I
Author: Peter R. Voke,Leonhard Kleiser,Jean-Pierre Chollet
Publsiher: Springer Science & Business Media
Total Pages: 438
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9789401110006

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It is a truism that turbulence is an unsolved problem, whether in scientific, engin eering or geophysical terms. It is strange that this remains largely the case even though we now know how to solve directly, with the help of sufficiently large and powerful computers, accurate approximations to the equations that govern tur bulent flows. The problem lies not with our numerical approximations but with the size of the computational task and the complexity of the solutions we gen erate, which match the complexity of real turbulence precisely in so far as the computations mimic the real flows. The fact that we can now solve some turbu lence in this limited sense is nevertheless an enormous step towards the goal of full understanding. Direct and large-eddy simulations are these numerical solutions of turbulence. They reproduce with remarkable fidelity the statistical, structural and dynamical properties of physical turbulent and transitional flows, though since the simula tions are necessarily time-dependent and three-dimensional they demand the most advanced computer resources at our disposal. The numerical techniques vary from accurate spectral methods and high-order finite differences to simple finite-volume algorithms derived on the principle of embedding fundamental conservation prop erties in the numerical operations. Genuine direct simulations resolve all the fluid motions fully, and require the highest practical accuracy in their numerical and temporal discretisation. Such simulations have the virtue of great fidelity when carried out carefully, and repre sent a most powerful tool for investigating the processes of transition to turbulence.

Direct and Large Eddy Simulation XII

Direct and Large Eddy Simulation XII
Author: Manuel García-Villalba,Hans Kuerten,Maria Vittoria Salvetti
Publsiher: Springer Nature
Total Pages: 478
Release: 2020-05-09
Genre: Technology & Engineering
ISBN: 9783030428228

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This book gathers the proceedings of the 12th instalment in the bi-annual Workshop series on Direct and Large Eddy Simulation (DLES), which began in 1994 and focuses on modern techniques used to simulate turbulent flows based on the partial or full resolution of the instantaneous turbulent flow structure. With the rapidly expanding capacities of modern computers, this approach has attracted more and more interest over the years and will undoubtedly be further enhanced and applied in the future. Hybrid modelling techniques based on a combination of LES and RANS approaches also fall into this category and are covered as well. The goal of the Workshop was to share the state of the art in DNS, LES and related techniques for the computation and modelling of turbulent and transitional flows. The respective papers highlight the latest advances in the prediction, understanding and control of turbulent flows in academic and industrial applications.

Large Eddy Simulation in Hydraulics

Large Eddy Simulation in Hydraulics
Author: Wolfgang Rodi,George Constantinescu,Thorsten Stoesser
Publsiher: CRC Press
Total Pages: 209
Release: 2013-06-27
Genre: Technology & Engineering
ISBN: 9781135121686

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An introduction to the Large-Eddy-Simulation (LES) method, geared primarily toward hydraulic and environmental engineers, the book covers special features of flows in water bodies and summarizes the experience gained with LES for calculating such flows. It can also be a valuable entry to the subject of LES for researchers and students in all fields of fluids engineering, and the applications part will be useful to researchers interested in the physics of flows governed by the dynamics of coherent structures.