RESEARCH OF THE EARTHQUAKE RESISTANCE OF FLAME TOWERS COMPLEX

Authors

  • Mamedov Shakir Author
  • Aliyev Ilqar Author
  • Hasanova Tukezban Author

DOI:

https://doi.org/10.58225/sw.2023.2-150-160

Keywords:

dynamic tests, seismometric stations, construction complex, free oscillations, dynamic parameters

Abstract

According to construction norms and rules, the territory of the Republic of Azerbaijan is a region prone to
moderate and strong earthquakes. Therefore, it is of great importance to obtain information about the nature and main
parameters of seismic events that may occur in the territory of the Republic of Azerbaijan and its adjacent zones, as
well as to determine the seismic stability of buildings under construction and operation. It is important to conduct
dynamic studies to study the stability of buildings. The theoretical calculation of the period of free oscillations of
buildings based on the stiffness, mass, geometric dimensions and shape of the load-bearing system is based on an
important assumption. Experimental determination of dynamic parameters is of great importance in the investigation
of how the building behaves during its construction and use. It is an important issue to determine the dynamic
parameters of the 16-22-story monolithic reinforced concrete frame buildings built in Baku and whose construction
has become massive. By determining the dynamic parameters of buildings and comparing them with the values of
normative parameters, it is possible to have certain knowledge about the earthquake resistance and condition of
buildings. The object of investigation of the research work is a complex of buildings built at M. Huseyn Street, 1A,
Sabail District, Baku City. In this work, research works on determining the dynamic parameters of the residential
building with the mobile diagnostic complex "Struna-3 Expert" were carried out.

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Published

2025-10-18

How to Cite

[1]
Mamedov Shakir, Aliyev Ilqar, and Hasanova Tukezban, “RESEARCH OF THE EARTHQUAKE RESISTANCE OF FLAME TOWERS COMPLEX”, SW AzUAC, no. 2, Oct. 2025, doi: 10.58225/sw.2023.2-150-160.

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