| Titre : | Principles of Convective Heat Transfer |
| Type de document : | Monographie imprimée |
| Année de publication : | 2026 |
| ISBN/ISSN/EAN : | 978-99691-24521-- |
| Format : | 1VOL.(48p) / ill.couv.ill.en coul / 30cm |
| Langues: | Français |
| Index. décimale : | 536.24 |
| Résumé : |
This book contains information obtained from highly regarded resources. Reprinted material sources are indicated. Copyright for individual articles remains with the authors as indicated and published under Creative Commons License. A Wide variety of references are listed. Reasonable efforts have been made to publish reliable data and views articulated in the chapters are those of the individual contributors, and not necessarily those of the editors or publishers. Editors or publishers are not responsible for the accuracy of the information in the published chapters or consequences of their use. The publisher assumes no responsibility for any damage or grievance to the persons or property arising out of the use of any materials, instructions, methods or thoughts in the book. The editors and the publisher have attempted to trace the copyright holders of all material reproduced in this publication and apologize to copyright holders if permission has not been obtained. If any copyright holder has not been acknowledged, please write to us so we may rectify. |
| Sommaire : |
TABLE OF CONTENTS List of Contributors...................... ...................ix Preface......................................xiii Analysis of Combined Radiation And Forced Convection Heat Transfer In 3D Laminar Flow Over An Inclined Forward Facing Step .. 1 Abstract .......... 1 Introduction ....................................... 2 Problem Description ............................. 5 Basic Equation .................. 6 Numerical Procedure ......... 11 Blocked-Off Method .......................................................................... 12 Code Validation .......................... 13 Results And Discussion............................ 26 References ...................... 27 Numerical Analysis of Downhole Heat Exchanger Designed For Geothermal Energy Production................................... 31 ■ Abstract .. Background ....................................................................................... 32 Methodology...................................................................................... 35 Results And Discussions ................................................................... 44 Economics............ ................................................ 50 Conclusions....................................................................................... 54 Future Work ...................................................................................... 55 Authors’ Contributions ....................................................................... 56 Acknowledgements .............. ............................................... 56 Appendix A ........................................................................................ 56 Appendix B ........................................................................................ 58 Appendix C........................................................................................ 59 References ................. 6 Experimental Convection Heat Transfer Analysis Of A Nano-Enhanced Industrial Coolant ..................................................... 65 ■ Abstract ........ Introduction ....................................................................................... 66 ■ Materials And Methods...................................................................... 70 Results And Discussion......... ....................... 78 Conclusions....................................................................................... 87 References ........................................................................................ 90 Slip-Flow And Heat Transfer In A Porous Microchannel Saturated With Power-Law Fluid ......................................................... 97 Abstract ............................................................................................. 97 Introduction .... 113 References ...................................................................................... 115 Assessing The Role Of Particles In Radiative Heat Transfer During Oxy-Combustion Of Coal And Biomass Blends ................. 119 Abstract ....................................................119 Introduction ..................................................................................... 120 Methods .......................................................................................... 122 Esults And Discussion ..................................................................... 130 Chapter 6 Conclusions..................................................................................... 149 References ...................................................................................... 153 Simulation of Natural Convection Heat Transfer Enhancement By Nanoparticles In An Open-Enclosure Using Lattice Boltzmann Method ................ 157 Abstract ........................................................................................... 157 Introduction ..................................................................................... 158 Lattice Boltzmann Method For Flow And Thermal Fields................ 161 Chapter 7 Nanofluids Modeling........................................................................ 16 Main Problem .................................................................................. 16 Result And Discussion .................................................................... 165 Conclusions..................................................................................... 169 References ...................................................................................... 170 A Numerical Study on Natural Convection Heat Transfer of Handheld Projectors With A Fin Array ......................................... 175 Abstract ........................................................................................... 175 Introduction ..................................................................................... 176 vi Chapter 8 Computational Methods And Boundary Conditions......................... 178 Results And Discussion................................................................... 183 Conclusions..................................................................................... 198 References ...................................................................................... 200 Effects Of Viscous Dissipation On Unsteady Mixed Convection Heat Transfer From A Circular Cylinder For Parallel and Contra Flows............................................ 203 Abstract ........................................................................................... 203 Introduction ..................................................................................... 204 Mathematical Formulation ............................................................... 207 Results And Discussion................................................................... 212 Conclusion ...................................................................................... 220 References ...................................................................................... 221 Chapter Numerical Modeling of Non-Similar Mixed Convection Heat Transfer Over A Stretching Surface With Slip Conditions ............. 225 Abstract ........................................................................................... 225 Introduction ..................................................................................... 226 Mathematical Analysis..................................................................... 228 Numerical Solution .......................................................................... 232 Results And Discussions ................................................................. 236 Conclusions..................................................................................... 241 References ...................................................................................... 244 Chapter 10 Experimental And Numerical Investigation Of Convective Heat Transfer Of Supercritical Carbon Dioxide At Low Mass Fluxes ..................... 249 Abstract ..................................................................... 249 Introduction ..................................................................................... 250 Experimental Setup And Data Reduction ........................................ 257 Results And Discussion................................................................... 261 Numerical Simulation Of Mixed Convection .................................... 272 Conclusions......................... 276 References ................................. 279 Citations ....................................................... 283 Index .................................. 287 |
| Type de document : | Livres |




