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The THA FOCUS series shines the spotlight on novel research to inspire engineering and scientific communities with exciting advancements in applied thermal fluids built on the fundamentals of thermodynamics, heat transfer, and fluid mechanics.
Thermodynamics Fluid Flow Heat TransferApplications AI and Machine Learning Research Methodologies Industrial R&D and Equipment Physical Properties
Basic Concepts Conduction Convection Radiation Phase Change Heat TransferMass Transfer
BOILINGMicro/Nano Scale Heat Transfer Electronics Cooling Experimental Methods in Heat Transfer Physical Properties
Active and passive methods of heat transfer enhancement during boiling Boiling at film liquid flows Boiling in thin layers of liquid DEFINITIONS Forced convection boiling Multicomponent mixtures Nucleate boiling Pool boilingChemical Transformations CONDENSATION Engineering applications Evaporation Melting
Boiling regimes, boiling curve Crises of the boilingThermal Analysis of Boiling Volumetric (flash) boiling up of liquids
Critical heat flux correlations First critical heat flux density (Burnout Transition Heat Flux. Departure from nucleate boiling (DNB)) Second critical heat flux density (Minimum Heat Flux Density)Dynamics of boiling regimes change Film boiling Heterogeneous nucleation Liquid boiling up and boiling crisis at non-stationary heat release Nucleate boiling Self-sustaining evaporation fronts Third boiling crisis Transitional boiling Unsteady cooling of highly overheated bodies (quenching) BURNOUT. TRANSITION HEAT FLUX. DEPARTURE FROM NUCLEATE BOILING (DNB)(open in a new tab) Critical heat flux(open in a new tab) MINIMUM HEAT FLUX DENSITY (SECOND BOILING CRISIS)(open in a new tab)