Modeling Approaches and Computational Methods for Particle-laden Turbulent Flows (Computation and Analysis of Turbulent Flows)

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Modeling Approaches and Computational Methods for Particle-laden Turbulent Flows (Computation and Analysis of Turbulent Flows)

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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 586 p.
  • 言語 ENG
  • 商品コード 9780323901338
  • DDC分類 620.1064

Full Description

Modelling Approaches and Computational Methods for Particle-laden Turbulent Flows introduces the principal phenomena observed in applications where turbulence in particle-laden flow is encountered while also analyzing the main methods for analyzing numerically. The book takes a practical approach, providing advice on how to select and apply the correct model or tool by drawing on the latest research.  Sections provide scales of particle-laden turbulence and the principal analytical frameworks and computational approaches used to simulate particles in turbulent flow. Each chapter opens with a section on fundamental concepts and theory before describing the applications of the modelling approach or numerical method.

Featuring explanations of key concepts, definitions, and fundamental physics and equations, as well as recent research advances and detailed simulation methods, this book is the ideal starting point for students new to this subject, as well as an essential reference for experienced researchers.

Contents

1. Introduction
Shankar Subramaniam and S. Balachandar
2. Particle dispersion and preferential concentration in particle-laden turbulence
Andrew J. Banko and John K. Eaton
3. Physics of two-way coupling in particle-laden homogeneous isotropic turbulence
Antonino Ferrante and Said Elghobashi
4. Coagulation in turbulent particle-laden flows
Lian-Ping Wang
5. Efficient methods for particle-resolved direct numerical simulation
Markus Uhlmann, Jos Derksen, Anthony Wachsy, Lian-Ping Wangz and
Manuel Moriche
6. Results from particle-resolved simulations
Agathe Chouippe, Aman G. Kidanemariam, Jos Derksen, Anthony Wachs and Markus Uhlmann
7. Modeling of short-range interactions between both spherical and non-spherical rigid particles
Anthony Wachs, Markus Uhlmann, Jos Derksen and Damien P. Huet
8. Improved force models for Euler - Lagrange computations
Jeremy A. K. Horwitz
9. Deterministic extended point - particle models
S. Balachandar and Martin R. Maxey
10. Stochastic models
Aaron M. Lattanzi and Shankar Subramaniam
11. Volume-filtered Euler - Lagrange method for strongly coupled fluid particle flows
Jesse Capecelatro and Oliver Desjardins
12. Quadrature-based moment methods for particle-laden flows
Alberto Passalacqua and Rodney O. Fox
13. Eulerian-Eulerian modeling approach for turbulent particle-laden flows
Berend van Wachem
14. Multiscale modeling of gas-fluidized beds
Yali Tang and J.A.M. (Hans) Kuipers
15. Future directions
Shankar Subramaniam and S. Balachandar

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