Transport and Mixing in Laminar Flows

From Microfluidics to Oceanic Currents
Buch | Hardcover
X, 180 Seiten
2011 | 1. Auflage
Wiley-VCH (Verlag)
978-3-527-41011-8 (ISBN)
135,00 inkl. MwSt
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This book provides readers from academia and industry with an up-to-date overview of important advances in the field, dealing with such fundamental fluid mechanics problems as nonlinear transport phenomena and optimal control of mixing at the micro- and nanoscale.
This book provides readers from academia and industry with an up-to-date overview of important advances in the field, dealing with such fundamental fluid mechanics problems as nonlinear transport phenomena and optimal control of mixing at the micro- and nanoscale. The editors provide both in-depth knowledge of the topic as well as vast experience in guiding an expert team of authors. The review style articles offer a coherent view of the micromixing methods, resulting in a much-needed synopsis of the theoretical models needed to direct experimental research and establish engineering principles for future applications. Since these processes are governed by nonlinear phenomena, this book will appeal to readers from both communities: fluid mechanics and nonlinear dynamics.

Roman Grigoriev got his PhD at the California Institute of Technology and became a Research Associate at the University of Chicago before he moved to Georgia Tech. Professor Grigoriev's research on nonequilibrium systems such as fluids, lasers and living systems ranges from mixing in fluids, thin liquid films and wide aperture lasers to the heart muscle. Heinz Georg Schuster is Professor of Theoretical Physics at the University of Kiel in Germany. He was a visiting professor at the Weizmann-Institute of Science in Israel and at the California Institute of Technology in Pasadena, USA. He authored and edited many books on nonlinear phenomena and chaos control.

Introduction
Mixing in laminar fluid flows: From microfluidics to oceanic currents (R.O. Grigoriev, Georgia Institute of Technology)
1. Resonance and Mixing in near-integrable volume-preserving systems (D. Vainchtein, Temple University)
2. Fluid stirring in a tilted rotating tank (Th. Ward, North Carolina State University)
3. Lagrangian Coherent Structures (Sh.C. Shadden, Illinois Institute of Technology)
4. Interfacial Transfer from Stirred Laminar Flows (J.D. Kirtland, Dordt College, and A.D. Stroock, Cornell University)
5. The effects of laminar mixing on reaction fronts and patterns (T. Solomon, Bucknell University)
6. Microfluidic flows of viscoelastic fluid (M.S.N. Oliveira, M.A. Alves, F.T. Pinho, University of Porto)

"The material should interest scientists working on fundamental aspects of the transport problem, and engineers using recent research findings to design new microfluidic devices." ( Book News , 1 April 2012)

Erscheint lt. Verlag 22.11.2011
Reihe/Serie Reviews of Nonlinear Dynamics and Complexity ; 4
Verlagsort Weinheim
Sprache englisch
Maße 170 x 240 mm
Gewicht 523 g
Themenwelt Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Schlagworte Electrical & Electronics Engineering • Electrical & Electronics Engineering • Elektrotechnik u. Elektronik • Fluidik • Fluidik / Fluidtechnik • fluid mechanics • Komplexes System • Komplexe Systeme • Maschinenbau • Materials Science • Materialwissenschaften • mechanical engineering • MEMS • Nanomaterialien • nanomaterials • Nanotechnologie • nanotechnology • Nichtlineare Dynamik • Nichtlineares System • Nichtlineare u. komplexe Systeme • Nonlinear and Complex Systems • Physics • Physik • Sensoren • Sensor Materials • Strömungsmechanik
ISBN-10 3-527-41011-2 / 3527410112
ISBN-13 978-3-527-41011-8 / 9783527410118
Zustand Neuware
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