Fluid Dynamics of Particles, Drops, and Bubbles by Eric Loth

Master multiphase flow with Eric Loth’s 2023 Cambridge textbook covering theory, simulations, and experiments for particles, drops, and bubbles.

eBook Details
Author Eric Loth
ISBN-13 9780521814362
Published 2023
Format Digital Download (PDF/EPUB)
Language English
Publisher Cambridge University Press
ISBN-10 0521814367
Edition First published 2023
File Size 15.5 MB
Pages 573

$14.99$26.00

About This Book

The Challenge It Addresses

Multiphase flow — the simultaneous movement of fluids and dispersed particles, drops, or bubbles — governs phenomena from sediment transport in rivers to drug delivery in the bloodstream. Yet mastering its complexities has long required juggling scattered theory, experimental data, and simulation methods. Fluid Dynamics of Particles, Drops, and Bubbles solves this by providing a unified, modern framework that bridges foundational principles with cutting-edge research, saving engineers and researchers weeks of cross-referencing.

Inside Fluid Dynamics of Particles, Drops, and Bubbles by Eric Loth (eBook): A Full Overview

Fluid Dynamics of Particles, Drops, and Bubbles is a comprehensive textbook by Eric Loth, published by Cambridge University Press in 2023. It presents a modern treatment of dispersed multiphase flow, covering solid particles, liquid drops, and gas bubbles through a balance of theory, experiments, simulations, and applied models. The book is designed to serve both as a graduate-level introduction and as a reference for practicing engineers.

The text systematically progresses from single-particle dynamics to collective behavior, addressing forces, collisions, breakup, coalescence, and heat/mass transfer. It integrates recent advances in computational fluid dynamics (CFD) and experimental techniques, making it one of the most up-to-date resources in the field.

Is This Book Right for You?

This book is tailored for three primary audiences: graduate students in mechanical, chemical, or aerospace engineering; researchers in multiphase flow and particle technology; and industry professionals working in process engineering, energy systems, or environmental fluid mechanics. It assumes a background in fluid mechanics and some exposure to transport phenomena, making it ideal for advanced coursework or self-study.

Professionals in oil and gas, pharmaceutical manufacturing, or combustion engineering will find the practical modeling approaches directly applicable to real-world problems. The book also suits researchers transitioning into multiphase flow from related disciplines, thanks to its clear progression from fundamentals to frontiers.

Skills You Will Gain

  • Governing equations for dispersed multiphase flow — from continuum to discrete formulations
  • Forces on particles, drops, and bubbles — drag, lift, virtual mass, and history effects in various Reynolds number regimes
  • Collision, coalescence, and breakup dynamics — models for solid particles and deformable fluid particles
  • Heat and mass transfer in multiphase systems — including phase change and evaporation
  • Computational approaches — Eulerian-Eulerian and Eulerian-Lagrangian methods with turbulence coupling
  • Experimental measurement techniques — from optical methods to phase Doppler anemometry and particle image velocimetry

Why Choose This Edition

Unlike older texts such as Multiphase Flow and Fluidization by Gidaspow or Bubbles, Drops, and Particles by Clift, Grace, and Weber, Loth’s book integrates the latest computational and experimental advances from the past two decades. Where competitors treat theory and simulation separately, this book weaves them together, showing how models are validated against data and where gaps remain.

The 2023 publication date ensures coverage of recent developments in DNS of particle-laden flows, interface-resolving simulations, and machine learning approaches — topics absent from older references. The unified treatment of particles, drops, and bubbles in a single volume also eliminates the need to consult multiple sources.

Author & Publisher Credentials

Eric Loth is a professor at the University of Virginia with decades of research experience in multiphase flow, renewable energy, and fluid dynamics. He has published extensively on particle dispersion, droplet dynamics, and wind energy, bringing both academic rigor and practical insight to the text. Cambridge University Press, a publisher synonymous with high-quality scientific and technical works, ensures rigorous peer review and editorial standards. The book’s first edition (2023) reflects the most current thinking in the field.

Loth’s background in both theoretical modeling and experimental validation gives the book a rare balance — each concept is grounded in verifiable results, not just mathematical abstraction.

The Bottom Line

For any serious student or practitioner of multiphase flow, this book is an essential investment. It condenses an entire graduate course’s worth of material into a coherent, well-structured volume that serves equally well as a learning tool and a desk reference. The integration of modern computational methods with classical theory sets it apart from every competing title.

At its core, the book addresses a critical need: understanding how dispersed phases interact with turbulent flows — knowledge that directly impacts reactor design, spray processes, and environmental modeling. The 2023 edition ensures you are learning the most current methods, not outdated approaches.

Start Reading Fluid Dynamics of Particles, Drops, and Bubbles by Eric Loth (eBook) Today

Whether you are a graduate student preparing for research, an engineer optimizing industrial processes, or a scientist exploring new frontiers in fluid dynamics, this book delivers the comprehensive, modern foundation you need. Add to cart now to gain instant digital access to the definitive 2023 text from Cambridge University Press. Start applying advanced multiphase flow principles to your projects immediately.