APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL

The Temperature Oscillation Infra-Red Thermography (TOIRT) was used to measure convective heat transfer coefficients at the inner vertical wall of an agitated and baffled vessel. Two impellers were used: an axial six-blade impeller with pitched blades and the Rushton turbine. The TOIRT method repres...

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Main Authors: Stanislav Solnař, Martin Dostál, Karel Petera, Tomáš Jirout
Format: Article
Language:English
Published: CTU Central Library 2018-04-01
Series:Acta Polytechnica
Subjects:
Online Access:https://ojs.cvut.cz/ojs/index.php/ap/article/view/4546
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spelling doaj-1509de40bf874639bb652a6e071a5d532020-11-24T23:18:54ZengCTU Central LibraryActa Polytechnica1210-27091805-23632018-04-0158214415410.14311/AP.2018.58.01444065APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSELStanislav Solnař0Martin Dostál1Karel Petera2Tomáš Jirout3Czech Technical University in PragueCzech Technical University in PragueCzech Technical University in PragueCzech Technical University in PragueThe Temperature Oscillation Infra-Red Thermography (TOIRT) was used to measure convective heat transfer coefficients at the inner vertical wall of an agitated and baffled vessel. Two impellers were used: an axial six-blade impeller with pitched blades and the Rushton turbine. The TOIRT method represents an indirect method based on measuring the phase shift between the oscillating heat flux applied to one side of the heat transfer surface and the wall temperature response monitored by a contactless infra-red camera at the same side. On the basis of this phase shift, the TOIRT method can indirectly evaluate the heat transfer coefficient on the other side of the heat transfer surface. Two forms of experimental results are presented in this paper. The first one describes graphical dependencies of the local Nusselt number on the dimensionless distance from the vessel bottom for various Reynolds numbers. The second form describes the mean Nusselt number along the wall as a function of the Reynolds number.https://ojs.cvut.cz/ojs/index.php/ap/article/view/4546TOIRTtemperature oscillation methodagitated vesselwallheat transfer coefficient
collection DOAJ
language English
format Article
sources DOAJ
author Stanislav Solnař
Martin Dostál
Karel Petera
Tomáš Jirout
spellingShingle Stanislav Solnař
Martin Dostál
Karel Petera
Tomáš Jirout
APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
Acta Polytechnica
TOIRT
temperature oscillation method
agitated vessel
wall
heat transfer coefficient
author_facet Stanislav Solnař
Martin Dostál
Karel Petera
Tomáš Jirout
author_sort Stanislav Solnař
title APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
title_short APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
title_full APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
title_fullStr APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
title_full_unstemmed APPLICATION OF THE TEMPERATURE OSCILLATION METHOD IN HEAT TRANSFER MEASUREMENTS AT THE WALL OF AN AGITATED VESSEL
title_sort application of the temperature oscillation method in heat transfer measurements at the wall of an agitated vessel
publisher CTU Central Library
series Acta Polytechnica
issn 1210-2709
1805-2363
publishDate 2018-04-01
description The Temperature Oscillation Infra-Red Thermography (TOIRT) was used to measure convective heat transfer coefficients at the inner vertical wall of an agitated and baffled vessel. Two impellers were used: an axial six-blade impeller with pitched blades and the Rushton turbine. The TOIRT method represents an indirect method based on measuring the phase shift between the oscillating heat flux applied to one side of the heat transfer surface and the wall temperature response monitored by a contactless infra-red camera at the same side. On the basis of this phase shift, the TOIRT method can indirectly evaluate the heat transfer coefficient on the other side of the heat transfer surface. Two forms of experimental results are presented in this paper. The first one describes graphical dependencies of the local Nusselt number on the dimensionless distance from the vessel bottom for various Reynolds numbers. The second form describes the mean Nusselt number along the wall as a function of the Reynolds number.
topic TOIRT
temperature oscillation method
agitated vessel
wall
heat transfer coefficient
url https://ojs.cvut.cz/ojs/index.php/ap/article/view/4546
work_keys_str_mv AT stanislavsolnar applicationofthetemperatureoscillationmethodinheattransfermeasurementsatthewallofanagitatedvessel
AT martindostal applicationofthetemperatureoscillationmethodinheattransfermeasurementsatthewallofanagitatedvessel
AT karelpetera applicationofthetemperatureoscillationmethodinheattransfermeasurementsatthewallofanagitatedvessel
AT tomasjirout applicationofthetemperatureoscillationmethodinheattransfermeasurementsatthewallofanagitatedvessel
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