Micro- and Nanoflows - Valery Ya. Rudyak, Vladimir M. Aniskin, Anatoly A. Maslov, Andrey V. Minakov, Sergey G. Mironov

Micro- and Nanoflows

Modeling and Experiments
Buch | Hardcover
XIX, 241 Seiten
2018 | 1st ed. 2018
Springer International Publishing (Verlag)
978-3-319-75522-9 (ISBN)
139,09 inkl. MwSt
This book describes physical, mathematical and experimental methods to model flows in micro- and nanofluidic devices. It takes in consideration flows in channels with a characteristic size between several hundreds of micrometers to several nanometers. Methods based on solving kinetic equations, coupled kinetic-hydrodynamic description, and molecular dynamics method are used. Based on detailed measurements of pressure distributions along the straight and bent microchannels, the hydraulic resistance coefficients are refined. Flows of disperse fluids (including disperse nanofluids) are considered in detail. Results of hydrodynamic modeling of the simplest micromixers are reported. Mixing of fluids in a Y-type and T-type micromixers is considered. The authors present a systematic study of jet flows, jets structure and laminar-turbulent transition. The influence of sound on the microjet structure is considered. New phenomena associated with turbulization and relaminarization of the mixing layer of microjets are discussed. Based on the conducted experimental investigations, the authors propose a chart of microjet flow regimes. When addressing the modeling of microflows of nanofluids, the authors show where conventional hydrodynamic approaches can be applied and where more complicated models are needed, and they analyze the hydrodynamic stability of the nanofluid flows. The last part of the book is devoted the statistical theory of the transport processes in fluids under confined conditions. The authors present the constitutive relations and the formulas for transport coefficients. In conclusion the authors present a rigorous analysis of the viscosity and diffusion in nanochannels and in porous media.

Valery Ya. Rudyak, Professor, graduated the physical faculty of the Novosibirsk State University. He completed his Ph.D. dissertation in kinetic theory of gases. In 1990 he defended the doctor of science in physics and mathematics dissertation. He is Honoured Science Worker of Russian Federation. He is head of theoretical mechanics department of the Novosibirsk State University of Architecture and Civil Engineering, simultaneously he is main research scientist of the Siberian Federal University. His main field of expertise includes the following subjects: nonequilibrium statistical mechanics, kinetic theory of gases, rarefied gas dynamics, physics and mechanics of transport processes, transport processes in nanofluids, flows in microchannels, multi-phases fluids, laminar-turbulent transition, CFD and molecular dynamics simulation. He is author of 6 monographs and more than 200 scientific papers. The main subjects of his research last years are the nanofluids transport properties and modelling micro- and nanoflows.

1 Methods of Modeling of Microflows and Nanoflows.- Abstract.- References.- 2 Gasdynamic Structure and Stability of Gas Microjets.- Abstract.- References.- 3 Fluid Flows in Microchannels.- Abstract.- References.- 4 Modeling of Micromixers.- Abstract.- References.- 5 Modeling of Nanoflows.- Abstract.- References.- 6 Fluid Transport under Constrained Conditions.- Abstract.- References.- Conclusions.- References.

Erscheinungsdatum
Reihe/Serie Fluid Mechanics and Its Applications
Zusatzinfo XIX, 241 p.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Gewicht 552 g
Themenwelt Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Naturwissenschaften Physik / Astronomie Festkörperphysik
Naturwissenschaften Physik / Astronomie Thermodynamik
Schlagworte fluid- and aerodynamics • Hydrodynamic stability in nanofluids • Lab-on--a-chip • Micro and nanofluidics • Microelectomechanical devices MEMS • Modeling of micromixers • T mixers
ISBN-10 3-319-75522-6 / 3319755226
ISBN-13 978-3-319-75522-9 / 9783319755229
Zustand Neuware
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