Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill
This paper presents a study of a free convection flow around the walls of a ventilation mill of the Thermal Power Plant “Kostolac B”, Kostolac, Serbia. A combined method consists of thermography and software post-processing, PATS. The PATS is specially developed for recognition of turbulence zones b...
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VINCA Institute of Nuclear Sciences
2021-01-01
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doaj-df51467c4eea44e4bbe2e958f39bd68b2021-07-23T07:12:40ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632021-01-01254 Part A2447245810.2298/TSCI200907341L0354-98362000341LTurbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant millLinić Suzana Lj.0Linić Mihajlo S.1Radojković Bojana M.2Ristić Slavica S.3Jegdić Bore V.4https://orcid.org/0000-0002-3287-3653University of Belgrade, Innovation Center of Faculty of Mechanical Engineering, Belgrade, SerbiaUniversity of Belgrade, Faculty of Electrical Engineering, Belgrade, SerbiaUniversity of Belgrade, Institute of Chemistry, Technology and Metallurgy, Belgrade, SerbiaCentral Institute for Conservation, Belgrade, SerbiaUniversity of Belgrade, Institute of Chemistry, Technology and Metallurgy, Belgrade, SerbiaThis paper presents a study of a free convection flow around the walls of a ventilation mill of the Thermal Power Plant “Kostolac B”, Kostolac, Serbia. A combined method consists of thermography and software post-processing, PATS. The PATS is specially developed for recognition of turbulence zones by the custom processing of large input data sets from thermal videos. The calculations determine maximum temperature fluctuation i.e. peak-to-peak fluctuation at every spot during the recording time. Three thermal videos of the walls were analyzed. Maximum temperature fluctuation occurred in the zones close to the obstacles, which are thus recognized as one of the main sources of turbulence. Besides, PATS has recognized fine camera oscillations and mechanical movements of a flexible material near the dozer wall. The detected zones of turbulence correspond to the previous studies and to the theory. The method shows good potential in the field of free convective flow research through the improvement of testing efficiency and cost savings. State-of-the-art thermograph cameras and updated software are recommended.http://www.doiserbia.nb.rs/img/doi/0354-9836/2021/0354-98362000341L.pdfconvectionturbulencethermographypost-processing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Linić Suzana Lj. Linić Mihajlo S. Radojković Bojana M. Ristić Slavica S. Jegdić Bore V. |
spellingShingle |
Linić Suzana Lj. Linić Mihajlo S. Radojković Bojana M. Ristić Slavica S. Jegdić Bore V. Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill Thermal Science convection turbulence thermography post-processing |
author_facet |
Linić Suzana Lj. Linić Mihajlo S. Radojković Bojana M. Ristić Slavica S. Jegdić Bore V. |
author_sort |
Linić Suzana Lj. |
title |
Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
title_short |
Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
title_full |
Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
title_fullStr |
Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
title_full_unstemmed |
Turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
title_sort |
turbulence recognition in free convective flow by thermal-video post-processing in the case of a thermal power plant mill |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Thermal Science |
issn |
0354-9836 2334-7163 |
publishDate |
2021-01-01 |
description |
This paper presents a study of a free convection flow around the walls of a ventilation mill of the Thermal Power Plant “Kostolac B”, Kostolac, Serbia. A combined method consists of thermography and software post-processing, PATS. The PATS is specially developed for recognition of turbulence zones by the custom processing of large input data sets from thermal videos. The calculations determine maximum temperature fluctuation i.e. peak-to-peak fluctuation at every spot during the recording time. Three thermal videos of the walls were analyzed. Maximum temperature fluctuation occurred in the zones close to the obstacles, which are thus recognized as one of the main sources of turbulence. Besides, PATS has recognized fine camera oscillations and mechanical movements of a flexible material near the dozer wall. The detected zones of turbulence correspond to the previous studies and to the theory. The method shows good potential in the field of free convective flow research through the improvement of testing efficiency and cost savings. State-of-the-art thermograph cameras and updated software are recommended. |
topic |
convection turbulence thermography post-processing |
url |
http://www.doiserbia.nb.rs/img/doi/0354-9836/2021/0354-98362000341L.pdf |
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