The Dynamics Of Fluidized Particles


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The Dynamics of Fluidized Particles


The Dynamics of Fluidized Particles

Author: Roy Jackson

language: en

Publisher: Cambridge University Press

Release Date: 2000-09-04


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Recent years have seen major progress in the development of equations to describe the motion of fluid-particle mixtures and their application to a limited range of problems. With rapid advances in numerical methods and computing power we are now presented with new opportunities to use direct integration of these equations in the solution of complex practical problems. However, results so obtained are only as good as the equations on which they are based, so it is essential to have a clear understanding of the underlying physics and the extent to which it is reflected properly in these equations. In The Dynamics of Fluidized Particles, first published in 2000, Jackson formulates these equations carefully and fully describes the important existing applications that serve to test their ability to predict salient phenomena. This account will be of value to both starters and established researchers in the field, and also to people interested in applying the equations to practical engineering problems.

Essentials of Fluidization Technology


Essentials of Fluidization Technology

Author: John R. Grace

language: en

Publisher: John Wiley & Sons

Release Date: 2020-06-15


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A concise and clear treatment of the fundamentals of fluidization, with a view to its applications in the process and energy industries.

Dynamics of Bubbles, Drops and Rigid Particles


Dynamics of Bubbles, Drops and Rigid Particles

Author: Z. Zapryanov

language: en

Publisher: Springer Science & Business Media

Release Date: 1998-12-31


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1. Objective and Scope Bubbles, drops and rigid particles occur everywhere in life, from valuable industrial operations like gas-liquid contracting, fluidized beds and extraction to such vital natural processes as fermentation, evaporation, and sedimentation. As we become increasingly aware of their fundamental role in industrial and biological systems, we are driven to know more about these fascinating particles. It is no surprise, therefore, that their practical and theoretical implications have aroused great interest among the scientific community and have inspired a growing number of studies and publications. Over the past ten years advances in the field of small Reynolds numbers flows and their technological and biological applications have given rise to several definitive monographs and textbooks in the area. In addition, the past three decades have witnessed enormous progress in describing quantitatively the behaviour of these particles. However, to the best of our knowledge, there are still no available books that reflect such achievements in the areas of bubble and drop deformation, hydrodynamic interactions of deformable fluid particles at low and moderate Reynolds numbers and hydrodynamic interactions of particles in oscillatory flows. Indeed, only one more book is dedicated entirely to the behaviour of bubbles, drops and rigid particles ["Bubbles, Drops and Particles" by Clift et al. (1978)] and the authors state its limitations clearly in the preface: "We treat only phenomena in which particle-particle interactions are of negligible importance. Hence, direct application of the book is limited to single-particle systems of dilute suspensions.