Turbulence Generation in Homogeneous Dilute Particle-laden Flows

Turbulence Generation in Homogeneous Dilute Particle-laden Flows PDF Author: Jeng-Horng Chen
Publisher:
ISBN:
Category :
Languages : en
Pages : 404

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Turbulence Generation in Homogeneous Dilute Particle-laden Flows

Turbulence Generation in Homogeneous Dilute Particle-laden Flows PDF Author: Jeng-Horng Chen
Publisher:
ISBN:
Category :
Languages : en
Pages : 404

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Turbulence Generation in Homogeneous Particle-laden Flows

Turbulence Generation in Homogeneous Particle-laden Flows PDF Author: J.-H. Chen
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Measurements and Predictions of Turbulence Generation in Homogeneous Particle-laden Flows

Measurements and Predictions of Turbulence Generation in Homogeneous Particle-laden Flows PDF Author: J.-H. Chen
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Particle-Laden Flow

Particle-Laden Flow PDF Author: Bernard Geurts
Publisher: Springer Science & Business Media
ISBN: 1402062176
Category : Science
Languages : en
Pages : 409

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Book Description
This book contains a selection of the papers that were presented at the EUROMECH colloquium on particle-laden flow held at the University of Twente in 2006. The multiscale nature of this challenging field motivated the calling of the colloquium and reflects the central importance that the dispersion of particles in a flow has in various geophysical and environmental problems. The spreading of aerosols and soot in the air, the growth and dispersion of plankton blooms in seas and oceans, or the transport of sediment in rivers, estuaries and coastal regions are striking examples.

Direct Numerical Investigations of Dilute Dispersed Flows in Homogeneous Turbulence

Direct Numerical Investigations of Dilute Dispersed Flows in Homogeneous Turbulence PDF Author: Aditya U. Karnik
Publisher:
ISBN:
Category :
Languages : en
Pages :

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The motivation for the present work is to investigate particle-laden turbulent flows using accurate numerical simulations. In the present work, the carrier phase is modeled using direct numerical simulations (DNS) and the particles are tracked in a Lagrangian sense. Investigations of both one-way and two-way coupled particulate flows in homogeneous isotropic turbulence have been carried out. The phenomenon of interest in one-way coupled simulations is preferential accumulation, which refers to the tendency of heavy particles in isotropic turbulence to collect in regions of high strain and low vorticity. Several measures and mechanisms of accumulation have been reported in the literature often showing conflicting scaling with particle and fluid parameters. In the present study, accumulation has been quantified using several indicators to give a unified picture. The present work addresses the scaling of preferential accumulation with Reynolds number and suggests that while the spacing between particle clusters does exhibit a dependence on Reynolds number, the structure of particle clusters as viewed by individual particles shows little dependence on Reynolds number. The effect of adding a gravitational settling force on the particles has also been explored. While the gravity force tends to homogenize the particle distribution at low Stokes numbers, at high Stokes numbers it tends to arrange the originally random distribution into streaks in the direction of gravity. The ability of the Lorentz force to limit preferential accumulation has been the focus of the next part of the study. Charges are placed on particles to produce an electric field when the particles are inhomogeneously distributed. The electric field and thereby the Lorentz force tend to homogenize the particle distribution. It is interesting to note that the particle distribution attains a stationary state determined by the total amount of charge contained in the domain. It is demonstrated that in the presence of gravity, less amount of charge is required to homogenise particle distribution. Good agreement is observed for simulations of settling charged particles with experimental work. The modification of carrier phase turbulence by particles is studied formono-sized particles. The non-uniform modification of the fluid energy spectrum by particles has been demonstrated. It is seen that there is an increase in energy at high wave numbers for microparticles (St k

Modeling Approaches and Computational Methods for Particle-laden Turbulent Flows

Modeling Approaches and Computational Methods for Particle-laden Turbulent Flows PDF Author: Shankar Subramaniam
Publisher: Academic Press
ISBN: 0323901344
Category : Technology & Engineering
Languages : en
Pages : 588

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Book 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. - Provides a comprehensive introduction to the phenomena of particle laden turbulent flow - Explains a wide range of numerical methods, including Eulerian-Eulerian, Eulerian-Lagrange, and volume-filtered computation - Describes a wide range of innovative applications of these models

Turbulence Modulation in Particle-laden Flows

Turbulence Modulation in Particle-laden Flows PDF Author: John D. Schwarzkopf
Publisher:
ISBN:
Category : Computational fluid dynamics
Languages : en
Pages : 128

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An Analytical Study of Particle Dispersion in Dilute, Particle-laden, Reacting and Non-reacting Turbulent Flows

An Analytical Study of Particle Dispersion in Dilute, Particle-laden, Reacting and Non-reacting Turbulent Flows PDF Author: Jitendra S. Shirolkar
Publisher:
ISBN:
Category : Dispersion
Languages : en
Pages : 374

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The dynamics of finite-size settling particles

The dynamics of finite-size settling particles PDF Author: Doychev, Todor
Publisher: KIT Scientific Publishing
ISBN: 3731503077
Category : Engineering (General). Civil engineering (General)
Languages : en
Pages : 272

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Book Description
This book contributes to the fundamental understanding of the physical mechanisms that take place in pseudo turbulent particulate flows. In the present work we have considered the sedimentation of large numbers of spherical rigid particles in an initially quiescent flow field. We have performed direct numerical simulations employing an immersed boundary method for the representation of the fluid-solid interface. The results evidence that depending on the particle settling regime (i.e. Galileo number and particle-to-fluid density ratio) the particles may exhibit strong inhomogeneous spatial distribution. It is found that the particles are preferentially located in regions with downward fluid motion. The particles inside clusters experience larger settling velocities than the average. The flow in all flow cases is observed to exhibit characteristic features of pseudo-turbulence. The particle-induced flow field is further found to be highly anisotropic with dominant vertical components. The results indicate that, in the present flow configurations, the collective and mobility effects play significant role for the particle and fluid motion.

Experimental Study of Particle-generated Turbulence in the Final Decay Period

Experimental Study of Particle-generated Turbulence in the Final Decay Period PDF Author: Kyungjin Lee
Publisher:
ISBN:
Category :
Languages : en
Pages : 382

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