## Convective Flow BoilingThis book comprises selected papers from the First International Conference on Convective Flow Boiling. The purpose of the conference is to examine state-of-science and recent developments in technology of flow boiling, i.e., boiling systems which are affected by convective flows. |

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### Contents

Phenomenological issues in Forced Convective Boiling G F Hewitt | 3 |

Advanced Experimental Methods F Mayinger | 15 |

Critical Heat Flux Mechanisms Y Katto | 29 |

Convective Boiling Applications in ShellandTube Heat Exchangers L W Swanson and J W Palen | 45 |

Boiling in Compact Heat ExchangersIndustrial Practice and Problems L E Haseler | 57 |

A Photographic Study of Nucleation Characteristics of Cavities in Flow Boiling S G Kandlikar M D | 73 |

Influence of Obstructions on the Initiation of Subcooled Boiling in an Annular Channel C Toda | 79 |

On the Net Vapor Generation Phenomenon in Low Pressure and Low Mass Flux Subcooled Flow Boiling | 85 |

CONVECTIVE FLOW BOILING | 171 |

Library of Congress CataloginginPublication Data | 171 |

The Principal Mechanisms for Boiling Contribution in Flow Boiling Heat Transfer V V Yagov | 175 |

Contributions of Convection and Boiling to Convective Flow Boiling J C Chen and K Tuzla | 181 |

An Alternative Model for Flow Boiling Heat Transfer V V Wadekar | 187 |

A General Heat Transfer Model for TwoPhase Annular Flow G Sun W H G T Chan and G | 193 |

Upstream CHF of Forced Convection Boiling in an Uniformly Healed Vertical Tube S Yokoya | 201 |

Critical Heat Flux of Subcooled Flow Boiling in Tube with and without Internal Twisted Tape under Uniform | 207 |

Vapor Bubble Growth in Highly Subcooled Heterogeneous Boiling W Chen R Mei and J | 91 |

Void Fraction and Recondensation Rate in Subcooled Forced Convective Boiling with Freon R 12 G Stäng | 98 |

Taylor Francis | 101 |

Subcooled Convective Boiling of Aqueous Surfactant Solutions Y M Yang and J R Maa | 105 |

ForcedConvection Subcooled Nucleate Boiling and Its Application in Microgravity T C Wang T | 111 |

Parametric Study of UltraHigh CHF in Highly Subcooled Water Flow inside Small Diameter Tubes | 116 |

The Effect of Tube Orientation on Heat Transfer N Kattan | 125 |

Convective Flow Boiling in Coiled Tubes R E Athey and L M Saupe | 131 |

Forced Convective Flow Boiling Heat Transfer of Pure Refrigerants inside a Horizontal Microfin Tube | 136 |

Heat Transfer and Pressure Drop Characteristics of Forced Convective Evaporation in Deep Spirally Fluted | 140 |

Heet Transfer end Pressure Drop Characteristics of Forced Convective Evaporation in Deep Spirally Fluted | 143 |

On the Effect of the Temperature Boundary Condition on Single Bubble Detachment in Flow Boiling C | 149 |

Suppression of Nucleation Sites in Flow Boiling J F Klausner and R Mei | 155 |

Suppression of Nucleation Sites in Flow Boiling J F Klausner and R Mei | 157 |

Investigation of Bubble Departure Mechanism in Subcooled Flow Boiling of Water Using HighSpeed | 160 |

Photography S G Kandlikar V R Mizo and M D Cartwright | 161 |

The Physical Dimension in Convective Boiling K Comwell and I A Grant | 167 |

Critical Heat Flux and Minimum Heat Flux of Film Boiling of Binary Mixtures Flowing Upwards in a Vertical | 213 |

Theoretical Modeling of CHF for NearSaturated Pool Boiling and Flow Boiling from Short Heaters Using | 219 |

Critical Heat Flux in Forced Convective Subcooled Boiling with one and More Impinging Jets M Monde | 227 |

Eltect of Well Thermal Conditions on Cross Flow Film Boitina Heat Transfer C A Montasser | 231 |

Study of Transition Boiling Heat Transfer in Quenching of a Flat Surface Using Surface Temperature | 237 |

Heat Transfer in Vertical Forced Convective Boiling of Binary Mixtures G P Celata M Cumo | 251 |

Heat Transfer from a Horizontal Tube to Boiling Binary Mixtures with Superimposed Convective Flow | 263 |

Subcooled Flow Boiling Heat Transfer to Mixtures and Solutions H MüllerSteinhagen | 277 |

A Current Review J R Thome | 285 |

Free and Forced Convective Boiling Heat Transfer from a Small Heating Element K Hijikata T Nagasaki | 299 |

Flow Boiling in a Narrow Channel M R Aligoodarz and D B R Kenning | 311 |

GasAssisted Evaporative Cooling in a Narrow Channel A BarCohen and Gary L Solbreken | 323 |

Falling Film Evaporation of Soluble Mixtures R Numrich | 335 |

Effects of an Electric Field on Nucleate Pool Boiling and Bubble Behavior on a Horizontal Wire Y C | 351 |

Injection P Geskes | 371 |

389 | |

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### Common terms and phrases

additive annular applications assumed boiling heat transfer bubble growth bulk calculated cavity channel compared comparison component constant convective boiling correlation decreasing density dependence detachment determined developed diameter distribution effect enhancement equation experimental experiments factor field Figure flow boiling fluid forced convection function geometry heat exchangers heat flux heat transfer coefficient heater heater surface higher horizontal increase inlet length liquid lower mass flux Mass Transfer mean measured mechanism method microlayer nucleate boiling NVG point observed obtained occurs parameter physical plate pool boiling predicted present pressure pressure drop range refrigerant regime region Reynolds number saturated shown shows subcooled subcooled boiling superheat suppression surface tension temperature term test section thermal thickness tube turbulent two-phase values vapor velocity vertical void fraction wall wave