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Frontiers and Progress in Multiphase Flow I.

Author: Lixin Cheng
Publisher: Dordrecht : Springer, 2014.
Series: Frontiers and Progress in Multiphase Flow.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This volume presents state-of-the-art of reviews in the field of multiphase flow. In focusses on nonlinear aspects of multiphase flow networks as well as visualization experiments. The first chapter presents nonlinear aspects or deterministic chaos issues in the systems of multi-phase reactors.?The second chapter reviews two-phase flow dynamics in combination with complex network theory. The third chapter discusses  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Cheng, Lixin.
Frontiers and Progress in Multiphase Flow I.
Dordrecht : Springer, ©2014
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Lixin Cheng
ISBN: 9783319043586 3319043587
OCLC Number: 881165987
Notes: 2.6.4 Boiling Two-Phase Flow in Large Diameter Pipe.
Description: 1 online resource (215 pages).
Contents: 1 Selected Aspects of Thermal-Hydraulics Modelling in Two-Phase Flows with Phase Change in Minichannels; Abstract; 1.1 ... Introduction; 1.2 ... Overview of Flow Structures and Basic Parameters Defining Two-Phase Flow; 1.2.1 Pressure drop; 1.2.2 Review of Selected Approaches for Determination of Two-Phase Flow Multipliers; 1.3 ... Review of Selected Correlations for Flows with Change of Phase; 1.3.1 Selected Flow Boiling Correlations; 1.3.2 Selected Flow Condensation Correlations; 1.4 ... Dissipation Based Model for Pressure Drop and Heat Transfer in Flow Boiling and Flow Condensation. 1.4.1 Heat Transfer Coefficient in Flow Boiling and Flow Condensation1.4.2 General Method for Calculation of Heat Transfer in Two-Phase Flows with Change of Phase; 1.4.3 Non-Adiabatic Effects in Flow Boiling and Flow Condensation; 1.4.3.1 Non-Adiabatic Effects in Annular Flow; 1.4.3.2 Non-Adiabatic Effects in Other than Annular Flows; 1.4.4 General Method for Calculation of Friction Pressure Drop in Two-Phase Flows with Phase Change; 1.4.5 Application of the Model to Subcooled Flow Boiling; 1.5 ... Modelling of Dryout in Minichannels; 1.5.1 Balance Equations of Mass and Momentum. 1.5.1.1 Mass Balance Equation of Liquid in the Core1.5.1.2 Mass Balance Equation of Gas in the Core; 1.5.1.3 Momentum Balance Equation of Liquid in the Film; 1.5.1.4 Momentum Balance Equation of Gas and Liquid in the Core; 1.5.2 Determination of Film Thickness; 1.5.3 Closure Equations and Working Equations; 1.5.3.1 Heat Flux Distribution; 1.5.3.2 Location of the Beginning of Annular Flow; 1.5.4 Procedure for Determination of the Location of Dryout; 1.6 ... Experimental Facility; 1.7 ... Experimental Validation of Model Predictions. 1.7.1 M-Shape Distribution of Heat Transfer Coefficient in Flow Boiling in Minichannels1.7.2 Flow Boiling in Small Diameter Tubes and Minichannels; 1.7.3 Comparisons of Flow Condensation Predictions with Experimental Data; 1.7.4 Comparison of Dryout Results with Experimental Data; 1.8 ... Summary; Acknowledgments; References; 2 Flow Characteristics and Void Fraction Prediction in Large Diameter Pipes; Abstract; 2.1 ... Introduction; 2.2 ... Characteristics of Large Diameter Pipes; 2.2.1 Surface Instability and Shearing off in Large Pipes; 2.2.2 Flow Regimes; 2.2.3 Effect of Inlet Conditions on Flow. 2.2.4 Relative Velocity in Large Diameter Pipes2.2.5 Profiles of Local Flow Parameters; 2.3 ... Flow Regime Transition Criteria; 2.4 ... Drift-Flux Models; 2.4.1 Formulation of the Drift-Flux Model; 2.4.2 Summary of Drift-Flux Correlations for Large Diameter Pipes; 2.5 ... Void Fraction Data in Large Diameter Pipes; 2.6 ... Comparisons and Analysis; 2.6.1 Drift Velocity in Large Diameter Pipes; 2.6.2 Distribution Parameter in Large Diameter Pipes; 2.6.3 Drift Flux Type Correlation Evaluations; 2.6.3.1 Evaluations with Low Flow Rate and Low Void Fraction Data; 2.6.3.2 Evaluations with High Void Fraction Data.
Series Title: Frontiers and Progress in Multiphase Flow.

Abstract:

This volume presents state-of-the-art of reviews in the field of multiphase flow. In focusses on nonlinear aspects of multiphase flow networks as well as visualization experiments. The first chapter presents nonlinear aspects or deterministic chaos issues in the systems of multi-phase reactors.?The second chapter reviews two-phase flow dynamics in combination with complex network theory. The third chapter discusses evaporation mechanism in the wick of copper heat pipes. The last chapter investigates numerically the flow dynamics and heat and mass transfer in the laminar and turbulent boundary.

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