Multiphase Flow Dynamics 1: Fundamentals

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Multi-phase flows are part of our natural environment such as tornadoes, typhoons, air and water pollution and volcanic activities as well as part of industrial technology such as power plants, combustion engines, propulsion systems, or chemical and biological industry. The industrial use of multi-phase systems requires analytical and numerical strategies for predicting their behavior. In its fourth extended edition the successful monograph package “Multiphase Flow Daynmics” contains theory, methods and practical experience for describing complex transient multi-phase processes in arbitrary geometrical configurations, providing a systematic presentation of the theory and practice of numerical multi-phase fluid dynamics.

In the present first volume the local volume and time averaging is used to derive a complete set of conservation equations for three fluids each of them having multi components as constituents. Large parts of the book are devoted on the design of successful numerical methods for solving the obtained system of partial differential equations. Finally the analysis is repeated for boundary fitted curvilinear coordinate systems designing methods applicable for interconnected multi-blocks. This fourth edition includes various updates, extensions, improvements and corrections.

"The literature in the field of multiphase flows is numerous. Therefore, it is very important to have a comprehensive and systematic overview including useful numerical methods. The volumes have the character of a handbook and accomplish this function excellently. The models are described in detail and a great number of comprehensive examples and some cases useful for testing numerical solutions are included. These two volumes are very useful for scientists and practicing engineers in the fields of technical thermodynamics, chemical engineering, fluid mechanics, and for mathematicians with interest in technical problems. Besides, they can give a good overview of the dynamically developing, complex field of knowledge to students. This monograph is highly recommended.”

BERND PLATZER, ZAAM

In the present first volume the local volume and time averaging is used to derive a complete set of conservation equations for three fluids each of them having multi components as constituents. Large parts of the book are devoted on the design of successful numerical methods for solving the obtained system of partial differential equations. Finally the analysis is repeated for boundary fitted curvilinear coordinate systems designing methods applicable for interconnected multi-blocks. This fourth edition includes various updates, extensions, improvements and corrections.

"The literature in the field of multiphase flows is numerous. Therefore, it is very important to have a comprehensive and systematic overview including useful numerical methods. The volumes have the character of a handbook and accomplish this function excellently. The models are described in detail and a great number of comprehensive examples and some cases useful for testing numerical solutions are included. These two volumes are very useful for scientists and practicing engineers in the fields of technical thermodynamics, chemical engineering, fluid mechanics, and for mathematicians with interest in technical problems. Besides, they can give a good overview of the dynamically developing, complex field of knowledge to students. This monograph is highly recommended.”

BERND PLATZER, ZAAM

Author(s): Nikolay Ivanov Kolev (auth.)
Edition: 4
Publisher: Springer-Verlag Berlin Heidelberg
Year: 2012

Language: English
Pages: 784
Tags: Engineering Fluid Dynamics;Engineering Thermodynamics, Heat and Mass Transfer;Fluid- and Aerodynamics;Thermodynamics

Front Matter....Pages -
Mass conservation....Pages 1-39
Conservation of Momentum....Pages 41-115
Derivatives for the equations of state....Pages 117-174
On the variety of notations of the energy conservation for single-phase flow....Pages 175-215
First and second laws of the thermodynamics....Pages 217-284
Some simple applications of mass and energy conservation....Pages 285-319
Exergy of multi-phase multi-component systems....Pages 321-333
One-dimensional three-fluid flows....Pages 335-417
Detonation waves caused by chemical reactions or by melt-coolant interactions....Pages 419-460
Conservation equations in general curvilinear coordinate systems....Pages 461-490
Type of the system of PDEs....Pages 491-496
Numerical solution methods for multi-phase flow problems....Pages 497-602
Numerical methods for multi-phase flow in curvilinear coordinate systems....Pages 603-651
Visual demonstration of the method....Pages 653-689
Back Matter....Pages -