Two Phase Heat Transfer 1st Edition by Mirza Mohammed Shah – Ebook PDF Instant Download/Delivery: 1119618614, 9781119618614
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Product details:
ISBN 10: 1119618614
ISBN 13: 9781119618614
Author: Mirza Mohammed Shah
Two Phase Heat Transfer 1st Table of contents:
Part I: Introduction to Two-Phase Heat Transfer
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Introduction to Phase Change Processes
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Definitions and Concepts of Phase Change
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Overview of Two-Phase Flow Systems
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Heat Transfer Mechanisms in Two-Phase Systems
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Fundamentals of Thermodynamics and Fluid Mechanics
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Thermodynamic Properties of Fluids
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Phase Diagrams and Critical Properties
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Fluid Flow and Pressure Drops in Two-Phase Systems
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Part II: Heat Transfer Mechanisms in Two-Phase Systems
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Boiling Heat Transfer
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Pool Boiling: Phenomena and Mechanisms
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Nucleate Boiling vs. Film Boiling
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Heat Flux and Temperature Profiles in Boiling
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Effects of Surface Roughness and Fluid Properties
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Boiling Correlations and Models
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Condensation Heat Transfer
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Condensation Mechanisms: Film Condensation vs. Dropwise Condensation
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The Role of Vapor and Liquid Surface Tension
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Heat Transfer Coefficients in Condensation
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Flow Regimes and Temperature Distribution during Condensation
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Enhancement Techniques for Condensation Heat Transfer
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Evaporation and Condensation in Microgravity
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Effects of Gravity on Phase Change Heat Transfer
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Heat Transfer in Space Applications (e.g., Heat Pipes)
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Thermal Management in Microgravity Environments
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Part III: Two-Phase Flow Dynamics
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Two-Phase Flow Regimes
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Flow Regimes in Boiling and Condensation: Bubble Flow, Slug Flow, Annular Flow, etc.
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Influence of Pressure and Temperature on Flow Patterns
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Transition Between Flow Regimes
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Visualization and Measurement Techniques for Flow Regimes
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Flow and Heat Transfer Coupling in Two-Phase Systems
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Interactions Between Flow and Heat Transfer in Boiling and Condensation
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Modeling the Coupling of Two-Phase Flow and Heat Transfer
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Impact of Flow Dynamics on Heat Transfer Performance
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Pressure Drop and Frictional Losses in Two-Phase Flow
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Pressure Drop Models for Two-Phase Flow
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Effects of Flow Regimes on Pressure Drop
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Methods for Estimating Frictional Losses and Heat Transfer Coefficients
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Part IV: Experimental Methods and Correlations
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Experimental Techniques in Two-Phase Heat Transfer
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Heat Transfer Coefficient Measurements in Two-Phase Flow
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Visualization Methods for Boiling and Condensation
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Data Acquisition Systems and Instruments for Two-Phase Studies
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Two-Phase Heat Transfer Correlations
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Empirical and Semi-Empirical Models for Boiling and Condensation
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Commonly Used Heat Transfer Correlations in Engineering Applications
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Comparison of Various Correlation Models and Their Applicability
Part V: Applications of Two-Phase Heat Transfer
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Heat Exchangers and Thermal Systems
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Two-Phase Flow in Heat Exchangers: Design and Performance
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Applications in Refrigeration and Air Conditioning
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Two-Phase Flow in Nuclear Reactors
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Thermal Management in Electronics and Microelectronics
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Heat Pipes and Loop Heat Pipes
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Principles of Heat Pipe Operation
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Design and Applications of Heat Pipes
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Loop Heat Pipes: Characteristics and Advantages
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Thermal Management in Space and Electronics Cooling
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Two-Phase Flow in Industrial Applications
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Power Plants and Boilers
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Chemical Process Industries
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Oil and Gas Production and Refining
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HVAC Systems and Supercooling Applications
Part VI: Advanced Topics and Future Directions
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Enhanced Heat Transfer in Two-Phase Systems
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Surface Enhancement Techniques for Boiling and Condensation
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Nanofluids and Their Application in Two-Phase Heat Transfer
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Active and Passive Heat Transfer Augmentation Methods
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Challenges and Future Trends in Two-Phase Heat Transfer
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Current Challenges in Predicting and Managing Two-Phase Heat Transfer
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Emerging Technologies and Research Areas
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Tags: Mirza Mohammed Shah, Heat Transfer


