Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces

Experimental and numerical works have been carried out to investigate the effect of impingement dimples surface on heat transfer characteristics in a circular test plate. Impingement jet technique and dimple shape can enhances the heat transfer rate caused by the high turbulence intensity. The cylin...

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Main Authors: Parkpoom Sriromreun, Paranee Sriromreun
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/643
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author Parkpoom Sriromreun
Paranee Sriromreun
author_facet Parkpoom Sriromreun
Paranee Sriromreun
author_sort Parkpoom Sriromreun
collection DOAJ
description Experimental and numerical works have been carried out to investigate the effect of impingement dimples surface on heat transfer characteristics in a circular test plate. Impingement jet technique and dimple shape can enhances the heat transfer rate caused by the high turbulence intensity. The cylindrical shape of dimple was used in this work. The simulation results were validated with the experimental data obtained from 4 types test plates. The simulate data displayed the flow structure and contour temperature surface on the test plate which provided the complex flow and heat transfer characteristics. The experimental results showed that the case of the dimple diameter (d) equal to the jet diameter (Dj), and the distance between jet and the test plate (B) is 2 times of Dj, yielded the maximum heat transfer rate. The heat transfer rate enhanced up to 200 % compared to a flat plate at Rej = 14,500.
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spelling doaj.art-a60f2c17d7bd4608b4fa762b924021172022-12-21T23:08:15ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870213Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple SurfacesParkpoom SriromreunParanee SriromreunExperimental and numerical works have been carried out to investigate the effect of impingement dimples surface on heat transfer characteristics in a circular test plate. Impingement jet technique and dimple shape can enhances the heat transfer rate caused by the high turbulence intensity. The cylindrical shape of dimple was used in this work. The simulation results were validated with the experimental data obtained from 4 types test plates. The simulate data displayed the flow structure and contour temperature surface on the test plate which provided the complex flow and heat transfer characteristics. The experimental results showed that the case of the dimple diameter (d) equal to the jet diameter (Dj), and the distance between jet and the test plate (B) is 2 times of Dj, yielded the maximum heat transfer rate. The heat transfer rate enhanced up to 200 % compared to a flat plate at Rej = 14,500.https://www.cetjournal.it/index.php/cet/article/view/643
spellingShingle Parkpoom Sriromreun
Paranee Sriromreun
Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
Chemical Engineering Transactions
title Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
title_full Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
title_fullStr Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
title_full_unstemmed Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
title_short Experimental and Numerical Studies of Heat Transfer Characteristics for Impinging Jet on Dimple Surfaces
title_sort experimental and numerical studies of heat transfer characteristics for impinging jet on dimple surfaces
url https://www.cetjournal.it/index.php/cet/article/view/643
work_keys_str_mv AT parkpoomsriromreun experimentalandnumericalstudiesofheattransfercharacteristicsforimpingingjetondimplesurfaces
AT paraneesriromreun experimentalandnumericalstudiesofheattransfercharacteristicsforimpingingjetondimplesurfaces