Concrete heat liberation in thermal stressed state analysis

This paper presents the results of numerical studies of the temperature regime and the thermal stressed state of the reinforced concrete wall of the nuclear power plant foundation block during the construction period with continuous concreting at full height. Calculations were done both using the de...

Full description

Bibliographic Details
Main Authors: Ivanov Ernest, Semenov Kirill, Barabanshchikov Yuriy, Akimov Stanislav, Kuleshin Alexey, Titov Nikita
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2023-12-01
Series:Magazine of Civil Engineering
Subjects:
Online Access:http://engstroy.spbstu.ru/article/2023.124.09/
_version_ 1797352231122501632
author Ivanov Ernest
Semenov Kirill
Barabanshchikov Yuriy
Akimov Stanislav
Kuleshin Alexey
Titov Nikita
author_facet Ivanov Ernest
Semenov Kirill
Barabanshchikov Yuriy
Akimov Stanislav
Kuleshin Alexey
Titov Nikita
author_sort Ivanov Ernest
collection DOAJ
description This paper presents the results of numerical studies of the temperature regime and the thermal stressed state of the reinforced concrete wall of the nuclear power plant foundation block during the construction period with continuous concreting at full height. Calculations were done both using the dependence of the change in heat liberation over time on the hardening temperature, according to the theory of I.D. Zaporozhets, as well as the experimental data. It is established that if Zaporozhets equation is used in calculations, the correction of heat release values should be performed in the first 45 hours of concrete hardening. In order to correct the theoretical values of the specific heat, the last one should be multiplied by the correction factor. The dependence of the factor on the time within the range of 4 to 45 hours is approximated with sufficient accuracy by the obtained fifth degree polynomial. The crack resistance of the structure was determined using a deformation criterion, taking into account the change in the ultimate elongation of concrete over time. In this particular case of concreting a structure it is shown that when the correction function is introduced into the calculation program there is no need to use thermal insulation. The direct economic effect, as well as the indirect one associated with the decrease in the construction period, allow avoiding the rise of the construction costs. It is proposed to use the developed methodology in practical calculations of thermal crack resistance of massive concrete and reinforced concrete structures during the construction period.
first_indexed 2024-03-08T13:13:16Z
format Article
id doaj.art-6bfff1d448cf47ac87b799631383a454
institution Directory Open Access Journal
issn 2712-8172
language English
last_indexed 2024-03-08T13:13:16Z
publishDate 2023-12-01
publisher Peter the Great St. Petersburg Polytechnic University
record_format Article
series Magazine of Civil Engineering
spelling doaj.art-6bfff1d448cf47ac87b799631383a4542024-01-18T11:05:42ZengPeter the Great St. Petersburg Polytechnic UniversityMagazine of Civil Engineering2712-81722023-12-011240810.34910/MCE.124.920714726Concrete heat liberation in thermal stressed state analysisIvanov Ernest0https://orcid.org/0000-0003-3420-9518Semenov Kirill1Barabanshchikov Yuriy2https://orcid.org/0000-0001-7011-8213Akimov Stanislav3https://orcid.org/0000-0002-2908-4565Kuleshin Alexey4Titov Nikita5https://orcid.org/0000-0001-6384-4989Peter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityPeter the Great St.Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityPeter the Great St. Petersburg Polytechnic UniversityThis paper presents the results of numerical studies of the temperature regime and the thermal stressed state of the reinforced concrete wall of the nuclear power plant foundation block during the construction period with continuous concreting at full height. Calculations were done both using the dependence of the change in heat liberation over time on the hardening temperature, according to the theory of I.D. Zaporozhets, as well as the experimental data. It is established that if Zaporozhets equation is used in calculations, the correction of heat release values should be performed in the first 45 hours of concrete hardening. In order to correct the theoretical values of the specific heat, the last one should be multiplied by the correction factor. The dependence of the factor on the time within the range of 4 to 45 hours is approximated with sufficient accuracy by the obtained fifth degree polynomial. The crack resistance of the structure was determined using a deformation criterion, taking into account the change in the ultimate elongation of concrete over time. In this particular case of concreting a structure it is shown that when the correction function is introduced into the calculation program there is no need to use thermal insulation. The direct economic effect, as well as the indirect one associated with the decrease in the construction period, allow avoiding the rise of the construction costs. It is proposed to use the developed methodology in practical calculations of thermal crack resistance of massive concrete and reinforced concrete structures during the construction period.http://engstroy.spbstu.ru/article/2023.124.09/concrete constructionreinforced concrete structuresconstruction periodthermo-stressed stateconcrete heat liberation
spellingShingle Ivanov Ernest
Semenov Kirill
Barabanshchikov Yuriy
Akimov Stanislav
Kuleshin Alexey
Titov Nikita
Concrete heat liberation in thermal stressed state analysis
Magazine of Civil Engineering
concrete construction
reinforced concrete structures
construction period
thermo-stressed state
concrete heat liberation
title Concrete heat liberation in thermal stressed state analysis
title_full Concrete heat liberation in thermal stressed state analysis
title_fullStr Concrete heat liberation in thermal stressed state analysis
title_full_unstemmed Concrete heat liberation in thermal stressed state analysis
title_short Concrete heat liberation in thermal stressed state analysis
title_sort concrete heat liberation in thermal stressed state analysis
topic concrete construction
reinforced concrete structures
construction period
thermo-stressed state
concrete heat liberation
url http://engstroy.spbstu.ru/article/2023.124.09/
work_keys_str_mv AT ivanovernest concreteheatliberationinthermalstressedstateanalysis
AT semenovkirill concreteheatliberationinthermalstressedstateanalysis
AT barabanshchikovyuriy concreteheatliberationinthermalstressedstateanalysis
AT akimovstanislav concreteheatliberationinthermalstressedstateanalysis
AT kuleshinalexey concreteheatliberationinthermalstressedstateanalysis
AT titovnikita concreteheatliberationinthermalstressedstateanalysis