Stochastic Lagrangian Modelling For Large Eddy Simulation Of Dispersed Turbulent Two Phase Flows


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Stochastic Lagrangian Modeling for Large Eddy Simulation of Dispersed Turbulent Two-Phase Flows


Stochastic Lagrangian Modeling for Large Eddy Simulation of Dispersed Turbulent Two-Phase Flows

Author: Abdallah Sofiane Berrouk

language: en

Publisher: Bentham Science Publishers

Release Date: 2011


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Understanding the dispersion and the deposition of inertial particles convected by turbulent flows is a domain of research of considerable industrial interest. Inertial particle transport and dispersion are encountered in a wide range of flow configurations, whether they are of industrial or environmental character. Conventional models for turbulent dispersed flows do not appear capable of meeting the growing needs of chemical, mechanical and petroleum industries in this regard and physical environment testing is prohibitive. Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) ha.

Stochastic Lagrangian Modelling for Large Eddy Simulation of Dispersed Turbulent Two-phase Flows


Stochastic Lagrangian Modelling for Large Eddy Simulation of Dispersed Turbulent Two-phase Flows

Author: Abdallah S. Berrouk

language: en

Publisher:

Release Date: 2007


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Multiphase Flow Handbook, Second Edition


Multiphase Flow Handbook, Second Edition

Author: Efstathios Michaelides

language: en

Publisher: CRC Press

Release Date: 2016-10-26


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The Multiphase Flow Handbook, Second Edition is a thoroughly updated and reorganized revision of the late Clayton Crowe’s work, and provides a detailed look at the basic concepts and the wide range of applications in this important area of thermal/fluids engineering. Revised by the new editors, Efstathios E. (Stathis) Michaelides and John D. Schwarzkopf, the new Second Edition begins with two chapters covering fundamental concepts and methods that pertain to all the types and applications of multiphase flow. The remaining chapters cover the applications and engineering systems that are relevant to all the types of multiphase flow and heat transfer. The twenty-one chapters and several sections of the book include the basic science as well as the contemporary engineering and technological applications of multiphase flow in a comprehensive way that is easy to follow and be understood. The editors created a common set of nomenclature that is used throughout the book, allowing readers to easily compare fundamental theory with currently developing concepts and applications. With contributed chapters from sixty-two leading experts around the world, the Multiphase Flow Handbook, Second Edition is an essential reference for all researchers, academics and engineers working with complex thermal and fluid systems.