An Introduction to Immersed Boundary Methods, 9781009123204
Hardcover
Master complex flow simulations with this immersive boundary method guide.
Pre-Order

$233.59

  • Hardcover

    234 pages

  • Release Date

    30 September 2025

Check Delivery Options

Summary

Mastering Immersed Boundary Methods: A Practical Guide to Complex Flow Simulations

Unlock the potential of computational fluid dynamics with this essential guide for master’s and graduate students, and researchers. It explores the immersed boundary method (IBM), a revolutionary approach for simulating flows in complex geometries. With a focus on fluid/structure interaction, it examines theoretical principles and practical implementations, offering insights into tackling intricate ge…

Book Details

ISBN-13:9781009123204
ISBN-10:1009123203
Series:Cambridge Monographs on Applied and Computational Mathematics
Author:Roberto Verzicco, Marco D. de Tullio, Francesco Viola
Publisher:Cambridge University Press
Imprint:Cambridge University Press
Format:Hardcover
Number of Pages:234
Release Date:30 September 2025
Weight:0g
About The Author

Roberto Verzicco

Roberto Verzicco is Professor of Fluid Dynamics at Tor Vergata University of Rome, the Gran Sasso Science Institute and the University of Twente. He is an Associate Editor of the ‘Journal of Fluid Mechanics’ and became Euromech President in 2025. The American Physical Society awarded him the Frenkiel Award (2005) for his studies on natural convection and the Stanley Corrsin Award (2022) for the immersed boundary method and its application to heart flows.

Marco D. de Tullio is Professor of Fluid Dynamics at Politecnico di Bari. He has been Visiting Researcher at the Center for Turbulence Research at Stanford University. His research focuses on the development of numerical codes for the simulation of complex multi-physics problems, involving fluid-structure and electrophysiology interaction.

Francesco Viola is Professor of Fluid Mechanics at Gran Sasso Science Institute, L’Aquila, working on multi-physics computational models that bridge engineering, physics and medicine. In his research, he combines numerics, experiments and theory to rationalize the physics at play in problems arising in natural and laboratory settings. Viola has applied immersed boundary methods to create a computational model of the whole human heart, which is currently exploited within the ERC-StG CARDIOTRIALS to investigate cardiac pathologies and optimize medical devices.

Returns

This item is eligible for free returns within 30 days of delivery. See our returns policy for further details.