Nucleate Pool Boiling on A Plain Surface

Nucleate pool boiling of distilled water on a plain copper surface has been investigated experimentally and modeled numerically. In the experimental study, bubble behavior on a single nucleation site was observed using high-speed photography and long-distance microscopy. Diameter for a single bub...

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Main Authors: Tugba Tetik, Ismail Yalcin Uralcan
Format: Article
Language:English
Published: Hitit University 2019-12-01
Series:Hittite Journal of Science and Engineering
Subjects:
Online Access:https://dergipark.org.tr/tr/download/article-file/1506553
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author Tugba Tetik
Ismail Yalcin Uralcan
author_facet Tugba Tetik
Ismail Yalcin Uralcan
author_sort Tugba Tetik
collection DOAJ
description Nucleate pool boiling of distilled water on a plain copper surface has been investigated experimentally and modeled numerically. In the experimental study, bubble behavior on a single nucleation site was observed using high-speed photography and long-distance microscopy. Diameter for a single bubble growth was determined during the ebullition cycle via recordings. Numerical simulations have been carried out using CLSVOF method using ANSYS 18.2. To verify the simulation, the bubble growth period is compared with the results of the experimental study. Data from the numerical results compare reasonably well with the experimental study.
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spelling doaj.art-d525fd42296b42cea51a0ab0fa0279a52023-10-10T11:17:27ZengHitit UniversityHittite Journal of Science and Engineering2148-41712019-12-016430931310.17350/HJSE19030000162150Nucleate Pool Boiling on A Plain SurfaceTugba Tetik0Ismail Yalcin Uralcan1Istanbul Technical University, Department of Mechanical Engineering, Istanbul,TurkeyIstanbul Technical University, Department of Mechanical Engineering, Istanbul,TurkeyNucleate pool boiling of distilled water on a plain copper surface has been investigated experimentally and modeled numerically. In the experimental study, bubble behavior on a single nucleation site was observed using high-speed photography and long-distance microscopy. Diameter for a single bubble growth was determined during the ebullition cycle via recordings. Numerical simulations have been carried out using CLSVOF method using ANSYS 18.2. To verify the simulation, the bubble growth period is compared with the results of the experimental study. Data from the numerical results compare reasonably well with the experimental study.https://dergipark.org.tr/tr/download/article-file/1506553nucleate pool boiling bubble growth rate high-speed photographyclsvof
spellingShingle Tugba Tetik
Ismail Yalcin Uralcan
Nucleate Pool Boiling on A Plain Surface
Hittite Journal of Science and Engineering
nucleate pool boiling
bubble growth rate
high-speed photography
clsvof
title Nucleate Pool Boiling on A Plain Surface
title_full Nucleate Pool Boiling on A Plain Surface
title_fullStr Nucleate Pool Boiling on A Plain Surface
title_full_unstemmed Nucleate Pool Boiling on A Plain Surface
title_short Nucleate Pool Boiling on A Plain Surface
title_sort nucleate pool boiling on a plain surface
topic nucleate pool boiling
bubble growth rate
high-speed photography
clsvof
url https://dergipark.org.tr/tr/download/article-file/1506553
work_keys_str_mv AT tugbatetik nucleatepoolboilingonaplainsurface
AT ismailyalcinuralcan nucleatepoolboilingonaplainsurface