Thermodynamics of Flow Boiling Heat Transfer
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F. J. Collado
Abstract
Convective boiling in sub-cooled water flowing through a heated channel is essential in many engineering applications where high heat flux needs to be accommodated. It has been customary to represent the heat transfer by the boiling curve, which shows the heat flux versus the wall-minus-saturation temperature difference. However it is a rather complicated problem, and recent revisions of two-phase flow and heat transfer note that calculated values of boiling heat transfer coefficients present many uncertainties. Quite recently, the author has shown that the average thermal gap in the heated channel (the wall temperature minus the average temperature of the coolant) was tightly connected with the thermodynamic efficiency of a theoretical reversible engine placed in this thermal gap. In this work, whereas this correlation is checked again with data taken by General Electric (task III) for water at high pressure, a possible connection between this wall efficiency and the reversible-work theorem is explored.
Copyright © 2003 by Walter de Gruyter GmbH & Co. KG
Articles in the same Issue
- Work Limits in Imperfect Sequential Systems with Heat and Fluid Flow
- Surface Stress on Isotropic Solids under Dissipative Processes
- Surface Stress on Isotropic Solids under Dissipative Processes: Appendices
- Thermodynamic Steady States in Simple Electrical Circuits
- Thermodynamics of Flow Boiling Heat Transfer
- GENERIC Compliance of a Temporary Network Model with Sliplinks, Chain-Length Fluctuations, Segment-Connectivity and Constraint Release
Articles in the same Issue
- Work Limits in Imperfect Sequential Systems with Heat and Fluid Flow
- Surface Stress on Isotropic Solids under Dissipative Processes
- Surface Stress on Isotropic Solids under Dissipative Processes: Appendices
- Thermodynamic Steady States in Simple Electrical Circuits
- Thermodynamics of Flow Boiling Heat Transfer
- GENERIC Compliance of a Temporary Network Model with Sliplinks, Chain-Length Fluctuations, Segment-Connectivity and Constraint Release