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2024 | OriginalPaper | Buchkapitel

Performance Evaluation of RC Elements Under Standard Fire Exposure Using Finite Element Analysis Approach

verfasst von : Anand Kumar, P. Ravi Prakash, Mhd Anwar Orabi

Erschienen in: Recent Developments in Structural Engineering, Volume 1

Verlag: Springer Nature Singapore

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Abstract

Reinforced concrete (RC) structural elements are usually designed for fire exposure by evaluating the fire resistance ratings (FRRs). FRRs are quantified by experimental tests, numerical simulations, and using guidelines available in codes and standards. In the Indian context, IS 456, IS 1642 and NBC (vol 1, part 4) mention guidelines for FRRs for RC structures under fire. These guidelines are based on comprehensive experimental testing on isolated/individual elements subjected to standard fire scenarios. They are prescriptive and typically yield FRRs as a function of clear cover and cross-section dimensions. They do not explicitly account for critical considerations such as load ratio, boundary conditions, material properties, etc. Given the rapidly evolving high-rise building stock in India, the aforementioned limitations need detailed investigation. In this context, the current study develops a finite element (FE) analysis-based FRR quantification framework for RC elements (beams and columns) designed using Indian Codes. The FE analysis is based on structural fire analysis in the OpenSees code using a 1-D beam-column element formulation. An experimental validation study is included to demonstrate the accuracy and efficacy of the FE analysis framework. Comprehensive response history analysis (temperatures and deflection histories) is conducted on the RC elements under fire conditions. Also, parametric studies are performed on the influence of cross-section, load ratio, boundary conditions, and clear cover on FRRs of RC elements. Furthermore, comparison studies on the FE analysis-based FRRs vs. FRRs as per Indian codes are presented.

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Literatur
1.
Zurück zum Zitat IS: 456-2000 (Reaffirmed 2021), Plain and reinforced concrete—code of practice. Bureau of Indian Standards, New Delhi, India IS: 456-2000 (Reaffirmed 2021), Plain and reinforced concrete—code of practice. Bureau of Indian Standards, New Delhi, India
2.
Zurück zum Zitat IS: 1642-2013 (Reaffirmed 2018), Fire safety of buildings (general): details of construction—code of practice. Bureau of Indian Standards, New Delhi, India IS: 1642-2013 (Reaffirmed 2018), Fire safety of buildings (general): details of construction—code of practice. Bureau of Indian Standards, New Delhi, India
3.
Zurück zum Zitat National Building Code (NBC) of India 2016, Volume 1, Part 4: Fire and Life Safety, Breau of Indian Standards, New Delhi, India National Building Code (NBC) of India 2016, Volume 1, Part 4: Fire and Life Safety, Breau of Indian Standards, New Delhi, India
5.
Zurück zum Zitat EN1992-1-2 (2004) Eurocode 2: Design of concrete structures. Part 1–2: general rules—structural fire design. Commission of European Communities, Brussels EN1992-1-2 (2004) Eurocode 2: Design of concrete structures. Part 1–2: general rules—structural fire design. Commission of European Communities, Brussels
14.
Zurück zum Zitat ISO 834-1975 (1975) Fire resistance tests – elements of building construction. International Organization for Standardization ISO 834-1975 (1975) Fire resistance tests – elements of building construction. International Organization for Standardization
15.
Zurück zum Zitat BS (1987) Fire tests on building materials and structures—part 20: method from determination of the fire resistance of elements of construction (general principles). BS 476-3:1987, BSi, UK BS (1987) Fire tests on building materials and structures—part 20: method from determination of the fire resistance of elements of construction (general principles). BS 476-3:1987, BSi, UK
Metadaten
Titel
Performance Evaluation of RC Elements Under Standard Fire Exposure Using Finite Element Analysis Approach
verfasst von
Anand Kumar
P. Ravi Prakash
Mhd Anwar Orabi
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-99-9625-4_53