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Takashi Hibiki, Mamoru Ishii (Beteiligte)

Thermo-Fluid Dynamics of Two-Phase Flow


2. Aufl. 2014. xvii, 518 S. 235 mm
Verlag/Jahr: SPRINGER, BERLIN; SPRINGER NEW YORK; SPRINGER 2014
ISBN: 1-489-98249-3 (1489982493)
Neue ISBN: 978-1-489-98249-0 (9781489982490)

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This volume provides a systematic treatment of two phase flow problems from a theoretical perspective. It offers an easy to follow treatment of modeling and code development of two phase flow related phenomena.
Thermo-fluid Dynamics of Two-Phase Flow, Second Edition is focused on the fundamental physics of two-phase flow. The authors present the detailed theoretical foundation of multi-phase flow thermo-fluid dynamics as they apply to: Nuclear reactor transient and accident analysis; Energy systems; Power generation systems; Chemical reactors and process systems; Space propulsion; Transport processes. This edition features updates on two-phase flow formulation and constitutive equations and CFD simulation codes such as FLUENT and CFX, new coverage of the lift force model, which is of particular significance for those working in the field of computational fluid dynamics, new equations and coverage of 1 dimensional drift flux models and a new chapter on porous media formulation.
Part I Fundamental of two-phase flow.- Introduction.- Local Instant Formulation.- Part II Two-phase field equations based on time average.- Basic Relations in Time Average.- Time Averaged Balance Equation.- Connection to Other Statistical Averages.- Part III. Three-dimensional model based on time average.- Kinematics of Averaged Fields.- Interfacial Transport.- Two-fluid Model.- Interfacial Area Transport.- Constitutive Modeling of Interfacial Area Transport.- Hydrodynamic Constitutive Relations for Interfacial Transfer.- Drift Flux Model.- Part IV: One-dimensional model based on time average.- One-dimensional Drift-flux Model.- One-dimensional Two-fluid Model.- Two-Fluid Model Considering Structural Materials in a Control Volume.
From the reviews of the second edition:
"Two-phase flow is a subject matter of interest to the researchers working in diverse fields. ... Here the authors systematically discuss the characteristics of multiphase flows with industrial applications. The text is divided into four parts to facilitate the reader´s search for appropriate material. ... The text fulfills the requirements of researchers and graduate students." (S. C. Rajvanshi, Zentralblatt MATH, Vol. 1209, 2011)