Thermophysical aspects of reconstruction of cold roof spaces

The results of theoretical studies of thermal modernization of cold roof floor. The designs of overlap of long-life roofs of public buildings were considered. Overlap of these buildings are made by wooden or concrete beams and made of concrete slabs with upward edges. The problems of thermal moderni...

Full description

Bibliographic Details
Main Authors: Semko Oleksandr, Yurin Oleg, Avramenko Yurii, Skliarenko Serhii
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201711602030
_version_ 1818456836635885568
author Semko Oleksandr
Yurin Oleg
Avramenko Yurii
Skliarenko Serhii
author_facet Semko Oleksandr
Yurin Oleg
Avramenko Yurii
Skliarenko Serhii
author_sort Semko Oleksandr
collection DOAJ
description The results of theoretical studies of thermal modernization of cold roof floor. The designs of overlap of long-life roofs of public buildings were considered. Overlap of these buildings are made by wooden or concrete beams and made of concrete slabs with upward edges. The problems of thermal modernization of these designs are consideration of the impact of heat-conducting inclusions on the resistance to heat. The heat-conducting inclusions of constructions are beams and vertical edges of the slabs. The results of calculations of the temperature fields were used for the analysis. The research was carried for the two temperature zones which Ukraine’s territory is divided into. The analysis of thermal protection level of structures overlap was made. The magnitude of the impact of heat-conducting inclusions on resistance to heat after thermal modernization of cold roof floor was observed. The analysis showed that the thermal protection properties of structures less than standard, therefore the insulation of areas with heat-conducting inclusions is required. The options of insulation of these areas were considered. The optimal insulation options with the least amount of additional insulation over the heat conductive areas were selected.
first_indexed 2024-12-14T22:33:00Z
format Article
id doaj.art-a3acbaea47744f2aa8e77cf7f4d77197
institution Directory Open Access Journal
issn 2261-236X
language English
last_indexed 2024-12-14T22:33:00Z
publishDate 2017-01-01
publisher EDP Sciences
record_format Article
series MATEC Web of Conferences
spelling doaj.art-a3acbaea47744f2aa8e77cf7f4d771972022-12-21T22:45:14ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011160203010.1051/matecconf/201711602030matecconf_trs2017_02030Thermophysical aspects of reconstruction of cold roof spacesSemko Oleksandr0Yurin Oleg1Avramenko Yurii2Skliarenko Serhii3Architecture and Urban Construction Department, Poltava National Technical Yuri Kondratyuk UniversityArchitecture and Urban Construction Department, Poltava National Technical Yuri Kondratyuk UniversityArchitecture and Urban Construction Department, Poltava National Technical Yuri Kondratyuk UniversityArchitecture and Urban Construction Department, Poltava National Technical Yuri Kondratyuk UniversityThe results of theoretical studies of thermal modernization of cold roof floor. The designs of overlap of long-life roofs of public buildings were considered. Overlap of these buildings are made by wooden or concrete beams and made of concrete slabs with upward edges. The problems of thermal modernization of these designs are consideration of the impact of heat-conducting inclusions on the resistance to heat. The heat-conducting inclusions of constructions are beams and vertical edges of the slabs. The results of calculations of the temperature fields were used for the analysis. The research was carried for the two temperature zones which Ukraine’s territory is divided into. The analysis of thermal protection level of structures overlap was made. The magnitude of the impact of heat-conducting inclusions on resistance to heat after thermal modernization of cold roof floor was observed. The analysis showed that the thermal protection properties of structures less than standard, therefore the insulation of areas with heat-conducting inclusions is required. The options of insulation of these areas were considered. The optimal insulation options with the least amount of additional insulation over the heat conductive areas were selected.https://doi.org/10.1051/matecconf/201711602030
spellingShingle Semko Oleksandr
Yurin Oleg
Avramenko Yurii
Skliarenko Serhii
Thermophysical aspects of reconstruction of cold roof spaces
MATEC Web of Conferences
title Thermophysical aspects of reconstruction of cold roof spaces
title_full Thermophysical aspects of reconstruction of cold roof spaces
title_fullStr Thermophysical aspects of reconstruction of cold roof spaces
title_full_unstemmed Thermophysical aspects of reconstruction of cold roof spaces
title_short Thermophysical aspects of reconstruction of cold roof spaces
title_sort thermophysical aspects of reconstruction of cold roof spaces
url https://doi.org/10.1051/matecconf/201711602030
work_keys_str_mv AT semkooleksandr thermophysicalaspectsofreconstructionofcoldroofspaces
AT yurinoleg thermophysicalaspectsofreconstructionofcoldroofspaces
AT avramenkoyurii thermophysicalaspectsofreconstructionofcoldroofspaces
AT skliarenkoserhii thermophysicalaspectsofreconstructionofcoldroofspaces