Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements

In this paper we present a laboratory installation for studying the effect of dustiness of the propagation medium in the case of non-contact temperature measurements. The presence of a nonstationary dust cloud in a real industrial environment between the object and the device of infrared thermal...

Full description

Saved in:
Bibliographic Details
Main Authors: N. S. Chernysheva, B. P. Ionov, A. B. Ionov
Format: Article
Language:English
Published: Omsk State Technical University, Federal State Autonoumos Educational Institution of Higher Education 2018-04-01
Series:Омский научный вестник
Subjects:
Online Access:https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2018/2%20(158)/110-115%20%D0%A7%D0%B5%D1%80%D0%BD%D1%8B%D1%88%D0%B5%D0%B2%D0%B0%20%D0%9D.%20%D0%A1.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%91.%20%D0%9F.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%90.%20%D0%91..pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832573649976033280
author N. S. Chernysheva
B. P. Ionov
A. B. Ionov
author_facet N. S. Chernysheva
B. P. Ionov
A. B. Ionov
author_sort N. S. Chernysheva
collection DOAJ
description In this paper we present a laboratory installation for studying the effect of dustiness of the propagation medium in the case of non-contact temperature measurements. The presence of a nonstationary dust cloud in a real industrial environment between the object and the device of infrared thermal control is an important factor causing an additional error, which significantly distorts the measurement results. The article presents the results of experimental modeling of the base states of a dust cloud of clinker dust. The most informative signs of the estimation of these states are shown using the example of a five-channel pyrometer with spectral separation of channels and an optical particle counter. It is shown that the proposed experimental setup allows to adequately simulate various situations of a dusty state of space between the contactless temperature control device and the object of measurement.
format Article
id doaj-art-ced22970824a47d39ebc7b8a8f1ef830
institution Kabale University
issn 1813-8225
2541-7541
language English
publishDate 2018-04-01
publisher Omsk State Technical University, Federal State Autonoumos Educational Institution of Higher Education
record_format Article
series Омский научный вестник
spelling doaj-art-ced22970824a47d39ebc7b8a8f1ef8302025-02-02T03:34:05ZengOmsk State Technical University, Federal State Autonoumos Educational Institution of Higher EducationОмский научный вестник1813-82252541-75412018-04-012 (158)11011510.25206/1813-8225-2018-158-110-115Experimental setup for studying the effect of dustiness in case of non-contact temperature measurementsN. S. Chernysheva0B. P. Ionov1A. B. Ionov2Omsk State Technical UniversityOmsk State Technical UniversityOmsk State Technical UniversityIn this paper we present a laboratory installation for studying the effect of dustiness of the propagation medium in the case of non-contact temperature measurements. The presence of a nonstationary dust cloud in a real industrial environment between the object and the device of infrared thermal control is an important factor causing an additional error, which significantly distorts the measurement results. The article presents the results of experimental modeling of the base states of a dust cloud of clinker dust. The most informative signs of the estimation of these states are shown using the example of a five-channel pyrometer with spectral separation of channels and an optical particle counter. It is shown that the proposed experimental setup allows to adequately simulate various situations of a dusty state of space between the contactless temperature control device and the object of measurement.https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2018/2%20(158)/110-115%20%D0%A7%D0%B5%D1%80%D0%BD%D1%8B%D1%88%D0%B5%D0%B2%D0%B0%20%D0%9D.%20%D0%A1.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%91.%20%D0%9F.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%90.%20%D0%91..pdfnon-contact temperature measurementsdust cloudoptical particle countertransmission coefficient
spellingShingle N. S. Chernysheva
B. P. Ionov
A. B. Ionov
Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
Омский научный вестник
non-contact temperature measurements
dust cloud
optical particle counter
transmission coefficient
title Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
title_full Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
title_fullStr Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
title_full_unstemmed Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
title_short Experimental setup for studying the effect of dustiness in case of non-contact temperature measurements
title_sort experimental setup for studying the effect of dustiness in case of non contact temperature measurements
topic non-contact temperature measurements
dust cloud
optical particle counter
transmission coefficient
url https://www.omgtu.ru/general_information/media_omgtu/journal_of_omsk_research_journal/files/arhiv/2018/2%20(158)/110-115%20%D0%A7%D0%B5%D1%80%D0%BD%D1%8B%D1%88%D0%B5%D0%B2%D0%B0%20%D0%9D.%20%D0%A1.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%91.%20%D0%9F.,%20%D0%98%D0%BE%D0%BD%D0%BE%D0%B2%20%D0%90.%20%D0%91..pdf
work_keys_str_mv AT nschernysheva experimentalsetupforstudyingtheeffectofdustinessincaseofnoncontacttemperaturemeasurements
AT bpionov experimentalsetupforstudyingtheeffectofdustinessincaseofnoncontacttemperaturemeasurements
AT abionov experimentalsetupforstudyingtheeffectofdustinessincaseofnoncontacttemperaturemeasurements