Increasing the reliability of reinforced concrete frames of multistorey buildings

The aim of the numerical research was to develop a method to improve the reliability of multistorey buildings with monolithic reinforced concrete frames. The method was based on the analysis of the total area of possible slab destruction due to emergencies and failure of individual building elements...

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Main Authors: A. P. Malyshkin, A. V. Esipov, M. A. Esipov
Format: Article
Language:Russian
Published: Industrial University of Tyumen 2024-06-01
Series:Архитектура, строительство, транспорт
Subjects:
Online Access:https://ast.tyuiu.ru/jour/article/view/158
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author A. P. Malyshkin
A. V. Esipov
M. A. Esipov
author_facet A. P. Malyshkin
A. V. Esipov
M. A. Esipov
author_sort A. P. Malyshkin
collection DOAJ
description The aim of the numerical research was to develop a method to improve the reliability of multistorey buildings with monolithic reinforced concrete frames. The method was based on the analysis of the total area of possible slab destruction due to emergencies and failure of individual building elements located in different places in the plan and in height. To analyze the reliability of spatial reinforced concrete frames according to the principle of single failure of a separate load-bearing structure, we introduced the concept of failure area coefficient. It allowed us to estimate the failure effect of a load-bearing key element of the building on the total failure area of the building slabs. In spatial frame structures of multistorey buildings with reinforced concrete frame, the key elements of the structural system are columns, pylons, collars, beams and other elements that ensure the overall stability of the building. Increasing the overall reliability of the frame building suggest the introducing an additional reliability coefficient of survivability depending on the failure area factor. In addition, we proposed an algorithm for analyzing and rejection of unsuccessful structural systems of monolithic reinforced concrete frame buildings based on the evaluation of excessively high ratios of building failure area. We analyzed the structural systems on the example of two constructed multistorey residential and public buildings with monolithic reinforced concrete frames.
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institution Kabale University
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2713-0770
language Russian
publishDate 2024-06-01
publisher Industrial University of Tyumen
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series Архитектура, строительство, транспорт
spelling doaj-art-1f0f0d65a10649f7a43f1e0f8175a79a2025-08-20T04:01:01ZrusIndustrial University of TyumenАрхитектура, строительство, транспорт2782-232X2713-07702024-06-0102425510.31660/2782-232X-2024-2-42-55159Increasing the reliability of reinforced concrete frames of multistorey buildingsA. P. Malyshkin0A. V. Esipov1M. A. Esipov2Industrial University of TyumenIndustrial University of TyumenIndustrial University of TyumenThe aim of the numerical research was to develop a method to improve the reliability of multistorey buildings with monolithic reinforced concrete frames. The method was based on the analysis of the total area of possible slab destruction due to emergencies and failure of individual building elements located in different places in the plan and in height. To analyze the reliability of spatial reinforced concrete frames according to the principle of single failure of a separate load-bearing structure, we introduced the concept of failure area coefficient. It allowed us to estimate the failure effect of a load-bearing key element of the building on the total failure area of the building slabs. In spatial frame structures of multistorey buildings with reinforced concrete frame, the key elements of the structural system are columns, pylons, collars, beams and other elements that ensure the overall stability of the building. Increasing the overall reliability of the frame building suggest the introducing an additional reliability coefficient of survivability depending on the failure area factor. In addition, we proposed an algorithm for analyzing and rejection of unsuccessful structural systems of monolithic reinforced concrete frame buildings based on the evaluation of excessively high ratios of building failure area. We analyzed the structural systems on the example of two constructed multistorey residential and public buildings with monolithic reinforced concrete frames.https://ast.tyuiu.ru/jour/article/view/158failure area coefficientmonolithic reinforced concreteframe buildingbuilding reliabilitysafetysurvivabilityprogressive collapse
spellingShingle A. P. Malyshkin
A. V. Esipov
M. A. Esipov
Increasing the reliability of reinforced concrete frames of multistorey buildings
Архитектура, строительство, транспорт
failure area coefficient
monolithic reinforced concrete
frame building
building reliability
safety
survivability
progressive collapse
title Increasing the reliability of reinforced concrete frames of multistorey buildings
title_full Increasing the reliability of reinforced concrete frames of multistorey buildings
title_fullStr Increasing the reliability of reinforced concrete frames of multistorey buildings
title_full_unstemmed Increasing the reliability of reinforced concrete frames of multistorey buildings
title_short Increasing the reliability of reinforced concrete frames of multistorey buildings
title_sort increasing the reliability of reinforced concrete frames of multistorey buildings
topic failure area coefficient
monolithic reinforced concrete
frame building
building reliability
safety
survivability
progressive collapse
url https://ast.tyuiu.ru/jour/article/view/158
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AT avesipov increasingthereliabilityofreinforcedconcreteframesofmultistoreybuildings
AT maesipov increasingthereliabilityofreinforcedconcreteframesofmultistoreybuildings