Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer

In this paper an analytical model for calculation of entropy production for Nusselt model of condensation of pure substance vapour is given. Model development starts from basic two-dimensional integral equation for entropy production and describes film condensation on a vertical wall. Model covers e...

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Main Authors: Martina Rauch, Saša Mudrinić, Antun Galović
Format: Article
Language:English
Published: SDEWES Centre 2021-03-01
Series:Journal of Sustainable Development of Energy, Water and Environment Systems
Subjects:
Online Access: http://www.sdewes.org/jsdewes/pid8.0326
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spelling doaj-5dc2533d7ac645d8a84196e9c55d0bcb2020-11-25T03:28:55ZengSDEWES CentreJournal of Sustainable Development of Energy, Water and Environment Systems1848-92572021-03-01910010.13044/j.sdewes.d8.03261080326Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate LayerMartina Rauch0Saša Mudrinić1Antun Galović2 Department of Thermodynamics and Thermal and Process Engineering, University of Zagreb, Faculty of Mechanical Engineering and Naval Architecture, Ivana Lučića 5, 10000 Zagreb, Croatia Department of Thermodynamics and Thermal and Process Engineering, University of Zagreb, Faculty of Mechanical Engineering and Naval Architecture, Ivana Lučića 5, 10000 Zagreb, Croatia Department of Thermodynamics and Thermal and Process Engineering, University of Zagreb, Faculty of Mechanical Engineering and Naval Architecture, Ivana Lučića 5, 10000 Zagreb, Croatia In this paper an analytical model for calculation of entropy production for Nusselt model of condensation of pure substance vapour is given. Model development starts from basic two-dimensional integral equation for entropy production and describes film condensation on a vertical wall. Model covers entropy production, which is a result of two-dimensional heat transfer in a condensate layer, existence of velocity gradient and condensate layer viscosity. Entropy contribution of each of the members is explicitly derived in a closed form and the results of calculation are shown in the appropriate diagrams. Diagrams present film condensation of dry saturated water steam and dry saturated ammonia steam, both with saturation temperature of 100 °C with surface wall temperature of 98.5 °C. Obtained equations and presentation of the related results have shown that dominant entropy production is directly connected only with heat conduction in y-axis direction, where y-axis corresponds with thickness of condensate layer. http://www.sdewes.org/jsdewes/pid8.0326 entropy analysisanalytical modelfilm condensationnusselt's theory.
collection DOAJ
language English
format Article
sources DOAJ
author Martina Rauch
Saša Mudrinić
Antun Galović
spellingShingle Martina Rauch
Saša Mudrinić
Antun Galović
Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
Journal of Sustainable Development of Energy, Water and Environment Systems
entropy analysis
analytical model
film condensation
nusselt's theory.
author_facet Martina Rauch
Saša Mudrinić
Antun Galović
author_sort Martina Rauch
title Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
title_short Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
title_full Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
title_fullStr Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
title_full_unstemmed Entropy Analysis of Complete Condensation of Saturated Steam on a Vertical Wall Using Nusselt Velocity and Temperature Profile in a Condensate Layer
title_sort entropy analysis of complete condensation of saturated steam on a vertical wall using nusselt velocity and temperature profile in a condensate layer
publisher SDEWES Centre
series Journal of Sustainable Development of Energy, Water and Environment Systems
issn 1848-9257
publishDate 2021-03-01
description In this paper an analytical model for calculation of entropy production for Nusselt model of condensation of pure substance vapour is given. Model development starts from basic two-dimensional integral equation for entropy production and describes film condensation on a vertical wall. Model covers entropy production, which is a result of two-dimensional heat transfer in a condensate layer, existence of velocity gradient and condensate layer viscosity. Entropy contribution of each of the members is explicitly derived in a closed form and the results of calculation are shown in the appropriate diagrams. Diagrams present film condensation of dry saturated water steam and dry saturated ammonia steam, both with saturation temperature of 100 °C with surface wall temperature of 98.5 °C. Obtained equations and presentation of the related results have shown that dominant entropy production is directly connected only with heat conduction in y-axis direction, where y-axis corresponds with thickness of condensate layer.
topic entropy analysis
analytical model
film condensation
nusselt's theory.
url http://www.sdewes.org/jsdewes/pid8.0326
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AT sasamudrinic entropyanalysisofcompletecondensationofsaturatedsteamonaverticalwallusingnusseltvelocityandtemperatureprofileinacondensatelayer
AT antungalovic entropyanalysisofcompletecondensationofsaturatedsteamonaverticalwallusingnusseltvelocityandtemperatureprofileinacondensatelayer
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