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Title: Mechanical safety of reinforced concrete frames under complex emergency actions // Magazine of Civil Engineering. – 2021. – № 3 (103). — С. 10306
Creators: Alekseytsev A. V.
Imprint: 2021
Collection: Общая коллекция
Subjects: Строительство; Строительная механика; reinforced concrete frames; complex emergency impacts; mechanical safety of frames; shock loads; dismantling of columns; nonlinear analysis; progressive destruction; железобетонные каркасы; сложные аварийные воздействия; механическая безопасность каркасов; ударные нагрузки; демонтаж колонн; нелинейный анализ; прогрессирующее разрушение
UDC: 624.04+624.07
LBC: 38.112
Document type: Article, report
File type: PDF
Language: English
DOI: 10.34910/MCE.103.6
Rights: Свободный доступ из сети Интернет (чтение, печать, копирование)
Record key: RU\SPSTU\edoc\67130

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Group: Anonymous

Network: Internet

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An approach to the calculation of the frame reinforced concrete structures taking into account the potential risk of financial losses in an emergency is proposed. The simplified conditions for the strength of structural components considering the potential relative risk of the financial losses for the structure during emergency failure of these components is formulated. The strain-stress state analysis using the finite element method based on bar models can be performed in dynamics. The reinforced concrete structural component in the form of a package of concrete and reinforcement layers that can be deformed according to actual diagrams approximated by piecewise linear functions. The calculations were considered by accounting geometric, structural and physical nonlinearity. As an example, illustrating the operability of the presented approach, were considered the frame of the building with several scenarios for emergency actions. This is a complete or partial exclusion of one column from the calculation model, accompanied by a horizontal impact. The exclusion of 0,75 and 0,5 parts of the cross section of the column as well as its complete exclusion, accompanied by a horizontal impact pulse were examined. A collision of a damaged structure with a rigid barrier and with a deformable base were simulated. The proposed approaches to modeling the stress-strain state and strength conditions of the bar reinforced concrete systems have prospects for using in algorithms of optimum parametric synthesis of structures based on metaheuristic approaches.

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Table of Contents

  • Mechanical safety of reinforced concrete frames under complex emergency actions
    • 1. Introduction
    • 2. Methods
      • 2.1. Operation conditions for the load-bearing structures of buildings with an increased level of social responsibility
      • 2.2. Finite-element modeling of local damage for engineering calculations and optimization algorithms in accidental situation
      • 2.3. Finite-element modeling of reinforced concrete structures with local damage
    • 3. Results and Discussion
      • 3.1. Description of the object calculation model
      • 3.2. Example of calculating a structural component taking into account the risks of financial losses
      • 3.3. Discussion
    • 4. Conclusion

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