Non-invasive tests of precast cantilever balcony in OWT-67 system

This article presents a non-invasive tests report of precast cantilever balcony support in OWT-67 large-panel system. During field testing, the balcony's reinforced concrete structure was subjected to radiometric analysis in the context of thermal energy distribution as well as from the point o...

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Main Authors: Bieranowski Piotr, Knyziak Piotr
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819602023
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spelling doaj-a949eddb80f44733872f066b101422142021-03-02T10:22:16ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011960202310.1051/matecconf/201819602023matecconf_rsp2018_02023Non-invasive tests of precast cantilever balcony in OWT-67 systemBieranowski PiotrKnyziak PiotrThis article presents a non-invasive tests report of precast cantilever balcony support in OWT-67 large-panel system. During field testing, the balcony's reinforced concrete structure was subjected to radiometric analysis in the context of thermal energy distribution as well as from the point of view of mycology - to the possible presence of spores of domestic fungi. The temperature distribution tests carried out by means of the electromagnetic wave detection in the infrared spectrum clearly confirmed the significant losses of thermal energy caused by the effect of the thermal constructional bridge located in the balcony. Mycological diagnosis was carried out using the rapid test of the Mycometer bacterial meter, which allows fluorimetric evaluation of the presence of the enzyme presence in filamentous fungi. In the conducted study, no spores of the house mushroom were found on the inside surface of the Z-type balcony supporting beam as a place where condensation of water vapor may occur. The summary also presents a design solution that allows to eliminate this physical problem.https://doi.org/10.1051/matecconf/201819602023
collection DOAJ
language English
format Article
sources DOAJ
author Bieranowski Piotr
Knyziak Piotr
spellingShingle Bieranowski Piotr
Knyziak Piotr
Non-invasive tests of precast cantilever balcony in OWT-67 system
MATEC Web of Conferences
author_facet Bieranowski Piotr
Knyziak Piotr
author_sort Bieranowski Piotr
title Non-invasive tests of precast cantilever balcony in OWT-67 system
title_short Non-invasive tests of precast cantilever balcony in OWT-67 system
title_full Non-invasive tests of precast cantilever balcony in OWT-67 system
title_fullStr Non-invasive tests of precast cantilever balcony in OWT-67 system
title_full_unstemmed Non-invasive tests of precast cantilever balcony in OWT-67 system
title_sort non-invasive tests of precast cantilever balcony in owt-67 system
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description This article presents a non-invasive tests report of precast cantilever balcony support in OWT-67 large-panel system. During field testing, the balcony's reinforced concrete structure was subjected to radiometric analysis in the context of thermal energy distribution as well as from the point of view of mycology - to the possible presence of spores of domestic fungi. The temperature distribution tests carried out by means of the electromagnetic wave detection in the infrared spectrum clearly confirmed the significant losses of thermal energy caused by the effect of the thermal constructional bridge located in the balcony. Mycological diagnosis was carried out using the rapid test of the Mycometer bacterial meter, which allows fluorimetric evaluation of the presence of the enzyme presence in filamentous fungi. In the conducted study, no spores of the house mushroom were found on the inside surface of the Z-type balcony supporting beam as a place where condensation of water vapor may occur. The summary also presents a design solution that allows to eliminate this physical problem.
url https://doi.org/10.1051/matecconf/201819602023
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