Damage Assessment of Reinforced Concrete Structures: A Review

Main Article Content

Gomasa Ramesh

Abstract

Damage may be assessed using several damage indices with values associated with different structural damage states. The usefulness of a variety of current response-based damage indices in seismic damage assessment is addressed and critically assessed. A novel rational damage assessment method is provided, which measures the structure’s physical reaction characteristics. A practical method based on various analyses is given to evaluate the damaged structures in earthquakes of different intensities. This paper provides an overview of previous research works on the damage assessment of the reinforced concrete structures. This study may be helpful for easy understanding about the damage assessment of reinforced concrete structures and reduce the impacts of disaster and surrounding structures.

Downloads

Download data is not yet available.

Article Details

How to Cite
[1]
Gomasa Ramesh , Tran., “Damage Assessment of Reinforced Concrete Structures: A Review”, IJDE, vol. 2, no. 1, pp. 1–7, Dec. 2023, doi: 10.54105/ijde.B8004.021322.
Section
Articles

How to Cite

[1]
Gomasa Ramesh , Tran., “Damage Assessment of Reinforced Concrete Structures: A Review”, IJDE, vol. 2, no. 1, pp. 1–7, Dec. 2023, doi: 10.54105/ijde.B8004.021322.
Share |

References

Yao, James TP. "Damage assessment of existing structures." Journal of the Engineering Mechanics Division 106.4 (1980): 785-799. [CrossRef]

Chen, Pu-Woei, and D. D. L. Chung. "Carbon fiber reinforced concrete as an intrinsically smart concrete for damage assessment during static and dynamic loading." Materials Journal 93.4 (1996): 341-350. [CrossRef]

Kim, T-H., et al. "Seismic damage assessment of reinforced concrete bridge columns." Engineering Structures 27.4 (2005): 576-592. [CrossRef]

Ndambi, J-M., Johnny Vantomme, and Kristof Harri. "Damage assessment in reinforced concrete beams using eigenfrequencies and mode shape derivatives." Engineering structures 24.4 (2002): 501-515. [CrossRef] 5. Ramya, "Health Monitoring of Structures by Using Non-Destructive Testing Methods." International Journal of Advances in Engineering and Management Volume 2: 652-654.

Van Den Abeele, Koen, and Joëlle De Visscher. "Damage assessment in reinforced concrete using spectral and temporal non-linear vibration techniques." Cement and concrete research 30.9 (2000): 1453-1464. [CrossRef]

Hait, Pritam, Arjun Sil, and Satyabrata Choudhury. "Damage Assessment of Reinforced Concrete-Framed Building Considering Multiple Demand Parameters in Indian Codal Provisions." Iranian Journal of Science and Technology, Transactions of Civil Engineering 44.1 (2020): 121-139. [CrossRef]

Park, Young-Ji, Alfredo H-S. Ang, and Yi Kwei Wen. "Seismic damage analysis of reinforced concrete buildings." Journal of Structural Engineering 111.4 (1985): 740-757. [CrossRef]

Park, Young-Ji, AH-S. Ang, and Yi-Kwei Wen. Seismic damage analysis and damage-limiting design of RC buildings. University of Illinois Engineering Experiment Station. College of Engineering. The University of Illinois at Urbana-Champaign., 1984.

Hait, Pritam, Arjun Sil, and Satyabrata Choudhury. "Seismic damage assessment and prediction using artificial neural network of RC building considering irregularities." Journal of Structural Integrity and Maintenance 5.1 (2020): 51-69. [CrossRef]

Ramesh, et al. “A Study on Strengthening of Concrete Structures”, Indian Journal of Structure Engineering, Volume-1 Issue-2, November 2021, pp: 28-31, DOI:10.35940/ijse.B1311.111221[CrossRef] 12. McAllister, Therese, and Therese McAllister. Developing guidelines and standards for disaster resilience of the built environment: A research needs assessment. Gaithersburg, MD: US Department of Commerce, National Institute of Standards and Technology, 2013. [CrossRef] 13. Montalvao, Diogo, Nuno Manuel Mendes Maia, and António Manuel Relógio Ribeiro. "A review of vibration-based structural health monitoring with special emphasis on composite materials." Shock and vibration digest 38.4 (2006): 295-324. [CrossRef]

Bracci, Joseph M., Sashi K. Kunnath, and Andrei M. Reinhorn. "Seismic performance and retrofit evaluation of reinforced concrete structures." Journal of Structural Engineering 123.1 (1997): 3-10. [CrossRef] 15. Ramesh, et al. "Repair, rehabilitation and retrofitting of reinforced concrete structures by using non-destructive testing methods." Materials Today: Proceedings (2021). [CrossRef]

Hait, Pritam, Arjun Sil, and Satyabrata Choudhury. "Damage Assessment of Reinforced Concrete Buildings Considering Irregularities (RESEARCH NOTE)." International Journal of Engineering 32.10 (2019): 1388-1394.

Catbas, F. Necati, and A. Emin Aktan. "Condition and damage assessment: issues and some promising indices." Journal of Structural Engineering 128.8 (2002): 1026-1036. [CrossRef]

Boone, Storer J. "Ground-movement-related building damage." Journal of geotechnical engineering 122.11 (1996): 886-896. [CrossRef] 19. Ramesh, "A Study on Strengthening of Concrete Structures."

T. Krykowski. 2021. The Application of Monte Carlo Method in the Modeling of Concrete Cover Damage in Reinforced Concrete. Environmental Challenges in Civil Engineering, pages 77-87. [CrossRef] 21. Malek, Jedidi, and Machta Kaouther. "Destructive and non-destructive testing of concrete structures." Jordan journal of civil engineering 8.4 (2014): 432-441. 22. Wankhade, Rajan L., and Amarsinh B. Landage. "Non-destructive testing of concrete structures in Karad region." Procedia Engineering 51 (2013): 8-18. [CrossRef] 23. Covello, Vincent T., and Miley W. Merkhoher. Risk assessment methods: approaches for assessing health and environmental risks. Springer Science & Business Media, 1993. 24. Gjørv, Odd E. Durability design of concrete structures in severe environments. CRC Press, 2009. [CrossRef] 25. Li, Chun-Qing, and S. T. Yang. "Prediction of concrete crack width under combined reinforcement corrosion and applied load." Journal of engineering mechanics 137.11 (2011): 722-731. [CrossRef] 26. Jones, Ro. "The non-destructive testing of concrete." Magazine of Concrete Research 1.2 (1949): 67-78. [CrossRef] 27. Helal, James, Massoud Sofi, and Priyan Mendis. "Non-destructive testing of concrete: A review of methods." Electronic Journal of Structural Engineering 14.1 (2015): 97-105. 28. Levitt, M. "Non-destructive testing of concrete by the initial surface absorption method." Non-destructive testing of concrete and timber. Thomas Telford Publishing, 1970. 23-26. 29. Chekroun, Mathieu, et al. "Analysis of coherent surface wave dispersion and attenuation for non-destructive testing of concrete." Ultrasonics 49.8 (2009): 743-751. [CrossRef]