Multiphase Flows with Droplets and Particles - Couverture rigide

Crowe, Clayton T.; Sommerfeld, Martin; Tsuji, Yutaka

 
9780849394690: Multiphase Flows with Droplets and Particles

Synopsis

"Preface Since the publication of the first edition of Multiphase Flow with Droplets and Particles in 1998 there have been important advances in the science and technology of dispersed phase flows. The intent of the second edition is to include these advances while retaining the organized, pedagogical approach of the first edition. The primary change is the introduction of a new chapter, Chapter 7, on the effect of the dispersed phase particles on the turbulence of the carrier phase. The other chapters have been modified and revised to reflect the new material. Chapter 4 has been updated to include the new information on particle drag and heat transfer. In Chapter 6, a reassessment of the volume-averaged conservation equations has been made with respect to the general applicability of the "two-fluid" concept. Chapter 8, on the equations for the dispersed phase, has been completely rewritten to include the current techniques for modeling dilute and dense flows. Chapter 9, on numerical modeling, has also been rewritten to include DNS and LES as well as volume-averaged equations for the ? - ? and Reynolds stress models. The exercises have been expanded and a solution manual is available to support the use of the book in an instructional environment"--Provided by publisher.

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Présentation de l'éditeur

Multiphase flow technology, especially in the area of gas-droplet and gas-particle flows, is increasingly important in the energy and manufacturing industries. Pollution control, pneumatic transport, food processing, combustion, and development of new materials as well as many other engineering applications will benefit from the fundamental engineering design applications and research in this field. Written for graduate students and professionals, Multiphase Flows with Droplets and Particles provides a clear, pedagogical approach to the fundamentals of gas-particle and gas-droplet flows.

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