
Control of Fluid Flow
Springer (Publisher)
Published on 31. May 2006
Book
Paperback/Softback
XVI, 230 pages
978-3-540-25140-8 (ISBN)
Description
Flow Control and Optimization is increasingly incorporated in the design of engineering devices ranging from aircraft and space vehicles to micro?uidic devices. Research in this ?eld aims to integrate knowledge in ?ow physics with theoretical advances and novel experimental capabilities and engineering devices capable of materializing advanced design concepts. In turn controlled ?ow phenomena exhibit a new arrays of physics and open frontiers for further interdisciplinary research in ?uid mechanics and all the engineering domains that it a?ects. This collection of papers in ?ow control, showcases representatives lines of work in the area of ?ow control demonstrating the interdisciplinary character and high scienti?c merit of this ?eld. The authors of these articles are among the pioneering researchers in this ?eld and continue to explore the frontiers in ?ow control and optimization. We hope that this volume, while largely representing work by the authors prior to 2004, contributes in providing an authoritative report on this rapidly changing ?eld.
More details
Series
Edition
2006 ed.
Language
English
Place of publication
Berlin
Germany
Publishing group
Springer Berlin
Target group
Professional and scholarly
Research
Illustrations
101 s/w Abbildungen
XVI, 230 p. 101 illus.
Dimensions
Height: 23.5 cm
Width: 15.5 cm
Weight
790 gr
ISBN-13
978-3-540-25140-8 (9783540251408)
DOI
10.1007/978-3-540-36085-8
Schweitzer Classification
Other editions
Additional editions

Petros Koumoutsakos | Igor Mezic
Control of Fluid Flow
E-Book
04/2010
Springer
€96.29
Available for download
Content
Control of Weak and Strong Reverse-Flow Regions in Incompressible Turbulent Boundary Layers.- Aerodynamic Flow Control Using Synthetic Jet Actuators.- Control of Mixing and Reactive Flow Processes.- Nonlinear Modeling and Control of Combustion Dynamics.- Control of Acoustics.- Distributed Control and Observation.- Global Boundary Stabilization of 2D Poiseuille Flow.- Exact Controllability and Feedback Stabilization from a Boundary for the Navier-Stokes Equations.- Vortex-based Control Algorithms.- Flow Optimization Using Stochastic Algorithms.