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TABLE OF CONTENTS Preface ix About the Author xi Acknowledgements xiii Nomenclature xv List of Figures xix List of Tables xxv 1. Introduction 1 1. Applications of Two-Phase Flow at Microgravity Conditions 2 2. Simulation of Microgravity Conditions 3 3. Scope of this Book 4 2. Classification of Gas¨CLiquid Flow Patterns 5 1. Horizontal Flows On-Ground 5 2. Vertical Flows On-Ground 6 3. Flow Patterns at Reduced-Gravity Conditions 7 3. Flow Pattern Transition Models 15 1. Models for Horizontal Flows On-Ground 15 2. Models for Vertical Upward Flows On-Ground 17 3. Extension of Ground Models to Conditions at Reduced Gravity 20 4. Modeling at Reduced Gravity 22 4. Gas¨CLiquid Flow Pressure Drop 29 1. Momentum Equations 29 2. Empirical Methods 29 3. Experimental Results at Reduced-Gravity Conditions 32 4. Comparison of Experimental Data with Empirical Methods 36 5. Void Fraction 39 1. Introduction 39 2. Instrumentation 41 3. Experimental Results and Comparisons 45 4. Void Fraction Distribution Coefficient 49 5. Signal Analysis and Probability Density Functions 53 6. Conclusions 6. Gas¨CLiquid Flow Heat Transfer 67 1. Experimental Facility and Procedure 68 2. Transient Effects 71 3. Experimental Results 91 4. Measurement Error and Uncertainty 100 5. Local Heat Transfer Coefficients 101 6. Mixed Convection 107 7. Empirical Correlations 108 7. Modeling Periodic Slug Flows Using a Volume of Fluid Method 123 1. Assumptions 123 2. Governing Equations 124 3. Interface-Tracking Model 124 4. Boundary Conditions 124 5. Superficial Two-Phase Flow Parameters 126 6. Numerical Implementation 127 7. Volume of Fluid Interface-Tracking Method 127 8. Model Geometry 128 9. Simulation Results 128 10. Conclusions 135 8. Summary and Conclusion 139 Appendix A 141 Appendix B 185 References 229 Index |
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