Turbulence and interactions : proceedings of the TI 2018 Conference, June 25-29, 2018, Les Trois-Îlets, Martinique, France / Michel Deville, Christophe Calvin, Vincent Couaillier, Marta De La Llave Plata, Jean-Luc Estivalèzes, Thiên Hiêp Lê, Stéphane Vincent, editors.
2021
TA357 .T87 2021
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Title
Turbulence and interactions : proceedings of the TI 2018 Conference, June 25-29, 2018, Les Trois-Îlets, Martinique, France / Michel Deville, Christophe Calvin, Vincent Couaillier, Marta De La Llave Plata, Jean-Luc Estivalèzes, Thiên Hiêp Lê, Stéphane Vincent, editors.
Meeting Name
TI (Conference) (2018 : Les Trois-Îlets, Martinique)
ISBN
9783030658205 (electronic book)
3030658201 (electronic book)
3030658198
9783030658199
3030658201 (electronic book)
3030658198
9783030658199
Published
Cham, Switzerland : Springer, [2021]
Language
English
Description
1 online resource (vii, 218 pages) : illustrations (some color)
Item Number
10.1007/978-3-030-65820-5 doi
Call Number
TA357 .T87 2021
Dewey Decimal Classification
620.1064
Summary
This book presents a snapshot of the state-of-art in the field of turbulence modeling, with an emphasis on numerical methods. Topics include direct numerical simulations, large eddy simulations, compressible turbulence, coherent structures, two-phase flow simulation and many more. It includes both theoretical contributions and experimental works, as well as chapters derived from keynote lectures, presented at the fifth Turbulence and Interactions Conference (TI 2018), which was held on June 25-29 in Martinique, France. This multifaceted collection, which reflects the conference´s emphasis on the interplay of theory, experiments and computing in the process of understanding and predicting the physics of complex flows and solving related engineering problems, offers a timely guide for students, researchers and professionals in the field of applied computational fluid dynamics, turbulence modeling and related areas.
Bibliography, etc. Note
Includes bibliographical references and author index.
Access Note
Access limited to authorized users.
Digital File Characteristics
text file
PDF
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed March 30, 2021).
Added Author
Deville, M. O. (Michel O.), editor.
Calvin, Christophe, editor.
Couaillier, Vincent, editor.
Llave Plata, Marta de la, editor.
Estivalèzes, Jean-Luc, editor.
Lê, Thien-Hiep, editor.
Vincent, Stéphane, editor.
Calvin, Christophe, editor.
Couaillier, Vincent, editor.
Llave Plata, Marta de la, editor.
Estivalèzes, Jean-Luc, editor.
Lê, Thien-Hiep, editor.
Vincent, Stéphane, editor.
Series
Notes on numerical fluid mechanics and multidisciplinary design ; v. 149. 1612-2909
Available in Other Form
Print version: 9783030658199
Print version: 9783030658212
Print version: 9783030658229
Print version: 9783030658212
Print version: 9783030658229
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Table of Contents
Simulation of a Particulate Flow in 3D using Volume Penalization Methods
Simulation of a Confined Turbulent Round Jet at Moderate Reynolds Number
Effect of Very-Large-Scale Motions on One- and Two-Point Statistics in Turbulent Pipe Flow Investigated by Direct Numerical Simulations
Large Eddy Simulation of Turbulent Heat Transfer in Pipe Flows of Temperature Dependent Power-law Fluids
The Flow Around a Surface Combatant at 100 Static Drift: Assessment of Turbulence Models
Sub-Grid Deconvolution Approach for Filtered Two-Fluid Models And the Application to Fluidized Gas-Particle Suspensions
Spreading Time of Liquids Droplets Impacting on Non-Wetting Solid Surfaces.
Simulation of a Confined Turbulent Round Jet at Moderate Reynolds Number
Effect of Very-Large-Scale Motions on One- and Two-Point Statistics in Turbulent Pipe Flow Investigated by Direct Numerical Simulations
Large Eddy Simulation of Turbulent Heat Transfer in Pipe Flows of Temperature Dependent Power-law Fluids
The Flow Around a Surface Combatant at 100 Static Drift: Assessment of Turbulence Models
Sub-Grid Deconvolution Approach for Filtered Two-Fluid Models And the Application to Fluidized Gas-Particle Suspensions
Spreading Time of Liquids Droplets Impacting on Non-Wetting Solid Surfaces.