Mean Value and Correlation Problems connected with the Motion of Small Particles suspended in a turbulent fluid

Mean Value and Correlation Problems connected with the Motion of Small Particles suspended in a turbulent fluid
Title Mean Value and Correlation Problems connected with the Motion of Small Particles suspended in a turbulent fluid PDF eBook
Author Tchen Chan-Mou
Publisher Springer
Pages 138
Release 2013-11-21
Genre Technology & Engineering
ISBN 9401761019

Download Mean Value and Correlation Problems connected with the Motion of Small Particles suspended in a turbulent fluid Book in PDF, Epub and Kindle

Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid. [With a Summary in Dutch.].

Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid. [With a Summary in Dutch.].
Title Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid. [With a Summary in Dutch.]. PDF eBook
Author Chan-mou CH'ÊN
Publisher
Pages 125
Release 1947
Genre
ISBN

Download Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid. [With a Summary in Dutch.]. Book in PDF, Epub and Kindle

Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid

Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid
Title Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid PDF eBook
Author C. M.. Tchen
Publisher
Pages 125
Release 1947
Genre
ISBN

Download Mean Value and Correlation Problems Connected with the Motion of Small Particles Suspended in a Turbulent Fluid Book in PDF, Epub and Kindle

Applied Mechanics Reviews

Applied Mechanics Reviews
Title Applied Mechanics Reviews PDF eBook
Author
Publisher
Pages 796
Release 1970
Genre Mechanics, Applied
ISBN

Download Applied Mechanics Reviews Book in PDF, Epub and Kindle

Small Scale Modeling and Simulation of Incompressible Turbulent Multi-Phase Flow

Small Scale Modeling and Simulation of Incompressible Turbulent Multi-Phase Flow
Title Small Scale Modeling and Simulation of Incompressible Turbulent Multi-Phase Flow PDF eBook
Author Stéphane Vincent
Publisher Springer Nature
Pages 314
Release 2022-10-06
Genre Technology & Engineering
ISBN 3031092651

Download Small Scale Modeling and Simulation of Incompressible Turbulent Multi-Phase Flow Book in PDF, Epub and Kindle

The book provides basic and recent research insights concerning the small scale modeling and simulation of turbulent multi-phase flows. By small scale, it has to be understood that the grid size for the simulation is smaller than most of the physical time and space scales of the problem. Small scale modeling of multi-phase flows is a very popular topic since the capabilities of massively parallel computers allows to go deeper into the comprehension and characterization of realistic flow configurations and at the same time, many environmental and industrial applications are concerned such as nuclear industry, material processing, chemical reactors, engine design, ocean dynamics, pollution and erosion in rivers or on beaches. The work proposes a complete and exhaustive presentation of models and numerical methods devoted to small scale simulation of incompressible turbulent multi-phase flows from specialists of the research community. Attention has also been paid to promote illustrations and applications, multi-phase flows and collaborations with industry. The idea is also to bring together developers and users of different numerical approaches and codes to share their experience in the development and validation of the algorithms and discuss the difficulties and limitations of the different methods and their pros and cons. The focus will be mainly on fixed-grid methods, however adaptive grids will be also partly broached, with the aim to compare and validate the different approaches and models.

Dynamics of Non-Spherical Particles in Turbulence

Dynamics of Non-Spherical Particles in Turbulence
Title Dynamics of Non-Spherical Particles in Turbulence PDF eBook
Author Luis Blay Esteban
Publisher Springer
Pages 163
Release 2019-08-13
Genre Technology & Engineering
ISBN 3030281361

Download Dynamics of Non-Spherical Particles in Turbulence Book in PDF, Epub and Kindle

This book studies the dynamics of 2D objects moving through turbulent fluids. It examines the decay of turbulence over extended time scales, and compares the dynamics of non-spherical particles moving through still and turbulent fluids. The book begins with an introduction to the project, its aims, and its relevance for industrial applications. It then discusses the movement of planar particles in quiescent fluid, and presents the numerous methodologies used to measure it. The book also presents a detailed analysis of the falling style of irregular particles, which makes it possible to estimate particle trajectory and wake morphology based on frontal geometry. In turn, the book provides the results of an analysis of physically constrained decaying turbulence in a laboratory setting. These results suggest that large-scale cut-off in numerical simulations can result in severe bias in the computed turbulent kinetic energy for long waiting times. Combining the main text with a wealth of figures and sketches throughout, the book offers an accessible guide for all engineering students with a basic grasp of fluid mechanics, while the key findings will also be of interest to senior researchers.

Computational Fluid Dynamics for the Petrochemical Process Industry

Computational Fluid Dynamics for the Petrochemical Process Industry
Title Computational Fluid Dynamics for the Petrochemical Process Industry PDF eBook
Author R.V.A. Oliemans
Publisher Springer Science & Business Media
Pages 237
Release 2012-12-06
Genre Science
ISBN 9401136327

Download Computational Fluid Dynamics for the Petrochemical Process Industry Book in PDF, Epub and Kindle

The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by Koninklijke/Shell-Laboratorium, Amsterdam, was on "Computational Fluid Dynamics for Petrochemical Process Equip ment". The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The conference was attended by scientists from four Shell laboratories and experts from universities in the USA, France, Great Britain, Germany and The Netherlands. R. V. A. Oliemans, G. Ooms and T. M. M. Verheggen formed the organizing committee. Complexities in fluid flow may arise from equipment geometry and/or the fluids themselves, which can be mUlti-component, single-phase or multiphase. Pressure and temperature gradients and any reactivity of components in the flow stream can be additional factors. Four themes were addressed: turbulent reacting and non-reacting flow, dispersed multiphase flow, separated two-phase flow and fluid flow simulation tools. The capabilities and limitations of a sequence of turbulence flow models, from the relatively simple k-£ model to direct numerical simulation and large eddy turbulence flow models, were considered for a range of petrochemical process equipment. Flow stability aspects and the potential of cellular automata for the simulation of industrial flows also received attention. The papers published in this special issue of Applied Scientific Research provide a fair representation of the Computational Fluid Dynamics topics discussed in the context of their application to petrochemical process equipment.