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Bubbles, Drops, and Particles

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Bubbles, Drops, and Particles Cover

 

Synopses & Reviews

Publisher Comments:

This volume offers a critical review of the literature concerning the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles. Upper-level undergraduates and graduate students, as well as professionals in the fields of engineering, physics, chemistry, geophysics, and applied mathematics, will find it a unified treatment of solid particles, liquid drops, and gas bubbles.

Starting with a summary of the fundamental principles and equations governing the behavior of bubbles, drops, and solid particles in Newtonian fluids, the text proceeds to a survey of the parameters used to characterize the shape of rigid particles, and of the factors that determine the shape of bubbles and drops. Succeeding chapters examine the behavior of solid and fluid particles under steady incompressible flow in an extended external phase. The text concludes with an exploration of effects that complicate the relatively simple case of a particle moving steadily through an unbounded fluid.

Synopsis:

This volume offers a unified treatment and critical review of the literature related to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles. 1978 edition.

Synopsis:

This volume offers a unified treatment and critical review of the literature related to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles. 1978 ed.

Synopsis:

This frequently cited book for upper-level undergraduate and graduate students offers a comprehensive critical review of the body of literature spanning the fields of engineering, physics, chemistry, geophysics, and applied mathematics as it applies to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles.

Table of Contents

Preface

Acknowledgments

1. Basic Principles

2. Shapes of Rigid and Fluid Particles

3. Slow Viscous Flow Past Spheres

4. Slow Viscous Flow Past Nonspherical Rigid Particles

5. Spheres at Higher Reynolds Numbers

6. Nonspherical Rigid Particles at Higher Reynolds Numbers

7. Ellipsoidal Fluid Particles

8. Deformed Fluid Particles of Large Size

9. Wall Effects

10. Surface Effects, Field Gradients, and Other Influences

11. Accelerated Motion without Volume Change

12. Formation and Breakup of Fluid Particles

Appendices

Nomenclature

Index

Errata

Product Details

ISBN:
9780486445809
Author:
Clift, Roland
Publisher:
Dover Publications
Author:
Clift, R.
Author:
Engineering
Author:
Grace, John
Author:
Weber, M. E.
Author:
Grace, J. R.
Author:
Weber, Martin E.
Subject:
Applied Sciences
Subject:
Hydraulics
Subject:
Mass transfer
Subject:
Heat
Subject:
Heat -- Transmission.
Subject:
Science Reference-Technology
Edition Description:
Trade Paper
Series:
Dover Civil and Mechanical Engineering
Publication Date:
20051231
Binding:
TRADE PAPER
Language:
English
Illustrations:
167 figues. 27 tables
Pages:
398
Dimensions:
9.25 x 6.13 in 1.16 lb

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Related Subjects

Arts and Entertainment » Art » History and Criticism
Reference » Science Reference » General
Reference » Science Reference » Technology
Science and Mathematics » Chemistry » Physical Chemistry
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Science and Mathematics » Physics » Fluid Mechanics

Bubbles, Drops, and Particles New Trade Paper
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Product details 398 pages Dover Publications - English 9780486445809 Reviews:
"Synopsis" by ,
This volume offers a unified treatment and critical review of the literature related to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles. 1978 edition.

"Synopsis" by ,
This volume offers a unified treatment and critical review of the literature related to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles. 1978 ed.

"Synopsis" by ,
This frequently cited book for upper-level undergraduate and graduate students offers a comprehensive critical review of the body of literature spanning the fields of engineering, physics, chemistry, geophysics, and applied mathematics as it applies to the fluid dynamics, heat transfer, and mass transfer of single bubbles, drops, and particles.

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