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Year 2025, Volume: 6 Issue: 2, 92 - 101
https://doi.org/10.58598/cuhes.1621203

Abstract

References

  • Adam M. A., El-Salakawy T. S., Salama M. A., Mohamed A. A. (2020). Assessment of structural condition of a historic masonry minaret in Egypt. Case Studies in Construction Materials, 13.
  • AFAD. (2023). Preliminary Assessment Report on 06 February 2023 Pazarcık (Kahramanmaraş) Mw 7.7 Elbistan (Kahramanmaraş) MW 7.6 Earthquakes. Earthquake Department, Ankara.
  • Altunışık A.C., Ateş S., Adanur S. (2018). SAP2000 Applications in Civil Engineering. Dynamics Academy, Trabzon.
  • Arslan M. A. (1997). Dulkadirli Architecture and Kahramanmaraş Great Mosque. Gazi University, Institute of Science and Technology, Master Thesis, Ankara.
  • Cakir F., Uckan E., Shen J., Seker B. S., Akbas B. (2015). Seismic damage evaluation of historical structures during Van earthquake, October 23, 2011. Engineering Failure Analysis, 58, pp. 249-266.
  • Çarhoğlu A. I., Korkmaz K. A. (2013). Evaluation of the Seismic Behavior of an Existing Masonry Building. Journal of Advanced Technology Sciences, 2(1), pp. 1-13.
  • DBYBHY. (2007). Regulation on Buildings to be Constructed in Earthquake Zone.
  • Doğangün A., Acar R., Livaoğlu R., Tuluk Ö. İ. (2006). Performance of masonry minarets against earthquakes and winds in Turkey. 1st International Conference on Restoration of Heritage Masonry Structures, Egypt.
  • Doğangün A., Acar R., Sezen H., Livaoğlu R. (2008). Investigation of dynamic response of masonry minaret structures. Bull Earthquake Eng, 6(3), pp. 505–517.
  • El-Attar A. G, Saleh A. M., Zaghw A. H. (2005). Conservation of a slender historical Mamluk-style minaret by passive control techniques. Structural Control and Health Monitoring, 12(2), pp. 157–177.
  • Eker F. (2013). A Look at the Historical Geography of Kahramanmaraş. Kahramanmaraş Sütçü İmam University Journal of Social Sciences, 10(2), pp. 25-38.
  • Erdoğan H. A., Başar M. E., Sezer R., Kara N. (2010). Structural Analysis Comparing the Minarets of The Selimiye Mosque with Ince Minaret Madrasa. 8th International Conference on Civil and Architecture Engineering.
  • Erdoğan H. A., Başar M. E. (2014). Dynamic comparison of three major Turkic minarets in the history of minaret evolution, Conference on Advances In Civil and Structural Engineering- CSE 2014.
  • Gönültaş Z. (2018). Ornamentation in Kahramanmaraş Mosques. Selcuk University, Institute of Social Sciences, Master Thesis, Konya.
  • Günal E., Beyen K. (2018). The Effect of Soil Behavior and Support Conditions on the Dynamic Behavior of Historical Buildings, Eskişehir Technical University Journal of Science and Technology B- Theoritical Sciences, 6, pp. 244-252.
  • Hökelekli E., Al‐Helwani A. (2019). Effect of soil properties on the seismic damage assessment of historical masonry minaret–soil interaction systems. The Structural Design of Tall and Special Buildings, 29(2).
  • Işık E., Avcil F., Harirchian E., Arkan E., Bilgin H., Özmen H. B. (2022). Architectural Characteristics and Seismic Vulnerability Assessment of a Historical Masonry Minaret under Different Seismic Risks and Probabilities of Exceedance. Buildings, 12 (1200).
  • Kahramanmaraş Ground Mosque, Cultural Inventory.
  • Korumaz M., Betti M., Conti A., Tucci G., Bartoli G., Bonora V., Kordonz A. G., Fiorini L. (2017). An Integrated Terrestrial Laser Scanner (TLS), Deviation Analysis (DA) and Finite Element (FE) approach for health assessment of historical structures. A minaret case study. Engineering Structures, 153, pp. 224–238.
  • Korkmaz A., Kayhan A. H. (2007). Comparison of Displacement Based Methods with Dynamic Analysis Methods in Elastic and Time History. Trakya University Journal of Natural Sciences, 9(1), pp. 7–13.
  • Livaoğlu R., Baştürk M. H., Doğangün A., Serhatoğlu C. (2016). Effect of geometric properties on dynamic behavior of historic masonry minaret, KSCE Journal of Civil Engineering. 20(6), pp. 2392–2402.
  • Mortezaei A., Kheyroddin A., Ronagh H. R. (2012). Finite element analysis and seismic rehabilitation of a 1000‐year‐old heritage listed tall masonry mosque. The Structural Design of Tall and Special Buildings, 21(5), pp. 334-353.
  • Naji D. M., Akın M. K., Cabalar A. F. (2020). A comparative study on the VS30 and N30 based seismic site classification in Kahramanmaraş, Turkey. Advances in Civil Engineering, pp. 1-15.
  • Karataş, L., Ateş, T., Alptekin, A., Dal, M., & Yakar, M. (2023). A systematic method for post-earthquake damage assessment: Case study of the Antep Castle, Türkiye. Advanced Engineering Science, 3, 62-71..
  • Sandal E. K., Karademir N. (2013). The Relationship between Ground Conditions and Earthquake Based on Seismicity in Kahramanmaraş / Soil-Settlement Relationship in the Context of Seismicity in Kahramanmaraş. 3rd International Geography Symposium- GEOMED 2013.
  • Sepetçi Ö. (2012). Early 20th century in Edirne Kaleiçi. Investigation of Carrier Systems and Construction Material Properties of Public Buildings, Namık Kemal University, Institute of Science and Technology, Master Thesis, Tekirdag.
  • Sönmeztürk G. (2022). Kahramanmaraş (Center) Minarets, Mersin University, Institute of Social Sciences, Master Thesis, Mersin.
  • Soyluk A., Ilerisoy Z. Y. (2013). Dynamic analysis of Dolmabahce masonary clock tower. Gradevinar 65(4), pp. 345-352.
  • Şeker B.S., Çakır F., Doğangün A., Uysal H. (2014). Investigation of the structural performance of a masonry domed mosque by experimental tests and numerical analysis, Earthquakes and Structures, 6(4), pp. 335–350.
  • Toprak S., Zülfikar A.C., Karabulut S., Mutlu A., Tuğsal Ü. M., Nacaroğlu E., Ceylan M., Özdemir K., Parlak S. (2023). Strong Ground Motion After 6 February 2023 Maraş Earthquakes (Pazarcık Mw7.7 and Elbistan Mw7.6), Geotechnical, Preliminary Investigation Report of Field Observations on Superstructure and Infrastructure. GTU/ MARTEST (Marmara Application and Research Center for Disaster Resistant Structures), Gebze.
  • Türkiye Building Earthquake Regulation. (2018). Disaster and Emergency Management Presidency.
  • Usta P. (2021). Assessment of seismic behavior of historic masonry minarets in Antalya, Turkey. Case Studies in Construction Materials, 15.
  • USGS NEIC. (2023). The 2023 Kahramanmaraş, Turkey, Earthquake Sequence.
  • Yurdakul M., Yılmaz F., Artar M., Can Ö., Öner E., Daloğlu A.T. (2021). Investigation of time-history response of a historical masonry minaret under seismic loads, Structures, 30, pp. 265–276.

The Effects of Earthquake Reality on Historical Minarets, Evaluations Specific to the February 06, 2023 Kahramanmaraş Earthquake

Year 2025, Volume: 6 Issue: 2, 92 - 101
https://doi.org/10.58598/cuhes.1621203

Abstract

When the masonry structures in the region were examined because of the February 6 Kahramanmaraş earthquake in Turkey, it was observed that mosque minarets were mostly damaged by overturning. Minarets, which are important for Islamic architecture, are susceptible to collapse under earthquakes due to their thin forms and high fragility rates. The behavior of structures against earthquakes is determined using various parameters. These parameters include material properties, location conditions, structural properties and existing damage. In this study, the translation ratios of the minaret of the Great Mosque of Kahramanmaraş, which is determined according to the typological characteristics in the earthquake zone with seismic risk, were calculated according to the probability of exceeding the performance limit values under the earthquake acceleration at the epicenter of Pazarcık-Kahramanmaraş and DD2 level, which occurred on 06.02.2023. The seismic behavior results of the models obtained according to the location of the minaret with the mosque (rising within the structure, adjacent to the structure and built separately from the structure) and soil class ZA, ZD were compared. The earthquake behavior of the minaret was analyzed by finite element analysis in SAP 2000 software. As a result of the study, it was determined that the displacement, maximum shear force and base shear force values obtained in the Pazarcık-Kahramanmaraş earthquake had larger values compared to the DD2 level earthquake level. The largest displacement occurred in the Pazarcık-Kahramanmaraş earthquake in Model 1 in the ZD soil class when the minaret was located separately from the structure. When the displacement values of the minaret are analyzed, it reached the highest level at the bracelet level.

References

  • Adam M. A., El-Salakawy T. S., Salama M. A., Mohamed A. A. (2020). Assessment of structural condition of a historic masonry minaret in Egypt. Case Studies in Construction Materials, 13.
  • AFAD. (2023). Preliminary Assessment Report on 06 February 2023 Pazarcık (Kahramanmaraş) Mw 7.7 Elbistan (Kahramanmaraş) MW 7.6 Earthquakes. Earthquake Department, Ankara.
  • Altunışık A.C., Ateş S., Adanur S. (2018). SAP2000 Applications in Civil Engineering. Dynamics Academy, Trabzon.
  • Arslan M. A. (1997). Dulkadirli Architecture and Kahramanmaraş Great Mosque. Gazi University, Institute of Science and Technology, Master Thesis, Ankara.
  • Cakir F., Uckan E., Shen J., Seker B. S., Akbas B. (2015). Seismic damage evaluation of historical structures during Van earthquake, October 23, 2011. Engineering Failure Analysis, 58, pp. 249-266.
  • Çarhoğlu A. I., Korkmaz K. A. (2013). Evaluation of the Seismic Behavior of an Existing Masonry Building. Journal of Advanced Technology Sciences, 2(1), pp. 1-13.
  • DBYBHY. (2007). Regulation on Buildings to be Constructed in Earthquake Zone.
  • Doğangün A., Acar R., Livaoğlu R., Tuluk Ö. İ. (2006). Performance of masonry minarets against earthquakes and winds in Turkey. 1st International Conference on Restoration of Heritage Masonry Structures, Egypt.
  • Doğangün A., Acar R., Sezen H., Livaoğlu R. (2008). Investigation of dynamic response of masonry minaret structures. Bull Earthquake Eng, 6(3), pp. 505–517.
  • El-Attar A. G, Saleh A. M., Zaghw A. H. (2005). Conservation of a slender historical Mamluk-style minaret by passive control techniques. Structural Control and Health Monitoring, 12(2), pp. 157–177.
  • Eker F. (2013). A Look at the Historical Geography of Kahramanmaraş. Kahramanmaraş Sütçü İmam University Journal of Social Sciences, 10(2), pp. 25-38.
  • Erdoğan H. A., Başar M. E., Sezer R., Kara N. (2010). Structural Analysis Comparing the Minarets of The Selimiye Mosque with Ince Minaret Madrasa. 8th International Conference on Civil and Architecture Engineering.
  • Erdoğan H. A., Başar M. E. (2014). Dynamic comparison of three major Turkic minarets in the history of minaret evolution, Conference on Advances In Civil and Structural Engineering- CSE 2014.
  • Gönültaş Z. (2018). Ornamentation in Kahramanmaraş Mosques. Selcuk University, Institute of Social Sciences, Master Thesis, Konya.
  • Günal E., Beyen K. (2018). The Effect of Soil Behavior and Support Conditions on the Dynamic Behavior of Historical Buildings, Eskişehir Technical University Journal of Science and Technology B- Theoritical Sciences, 6, pp. 244-252.
  • Hökelekli E., Al‐Helwani A. (2019). Effect of soil properties on the seismic damage assessment of historical masonry minaret–soil interaction systems. The Structural Design of Tall and Special Buildings, 29(2).
  • Işık E., Avcil F., Harirchian E., Arkan E., Bilgin H., Özmen H. B. (2022). Architectural Characteristics and Seismic Vulnerability Assessment of a Historical Masonry Minaret under Different Seismic Risks and Probabilities of Exceedance. Buildings, 12 (1200).
  • Kahramanmaraş Ground Mosque, Cultural Inventory.
  • Korumaz M., Betti M., Conti A., Tucci G., Bartoli G., Bonora V., Kordonz A. G., Fiorini L. (2017). An Integrated Terrestrial Laser Scanner (TLS), Deviation Analysis (DA) and Finite Element (FE) approach for health assessment of historical structures. A minaret case study. Engineering Structures, 153, pp. 224–238.
  • Korkmaz A., Kayhan A. H. (2007). Comparison of Displacement Based Methods with Dynamic Analysis Methods in Elastic and Time History. Trakya University Journal of Natural Sciences, 9(1), pp. 7–13.
  • Livaoğlu R., Baştürk M. H., Doğangün A., Serhatoğlu C. (2016). Effect of geometric properties on dynamic behavior of historic masonry minaret, KSCE Journal of Civil Engineering. 20(6), pp. 2392–2402.
  • Mortezaei A., Kheyroddin A., Ronagh H. R. (2012). Finite element analysis and seismic rehabilitation of a 1000‐year‐old heritage listed tall masonry mosque. The Structural Design of Tall and Special Buildings, 21(5), pp. 334-353.
  • Naji D. M., Akın M. K., Cabalar A. F. (2020). A comparative study on the VS30 and N30 based seismic site classification in Kahramanmaraş, Turkey. Advances in Civil Engineering, pp. 1-15.
  • Karataş, L., Ateş, T., Alptekin, A., Dal, M., & Yakar, M. (2023). A systematic method for post-earthquake damage assessment: Case study of the Antep Castle, Türkiye. Advanced Engineering Science, 3, 62-71..
  • Sandal E. K., Karademir N. (2013). The Relationship between Ground Conditions and Earthquake Based on Seismicity in Kahramanmaraş / Soil-Settlement Relationship in the Context of Seismicity in Kahramanmaraş. 3rd International Geography Symposium- GEOMED 2013.
  • Sepetçi Ö. (2012). Early 20th century in Edirne Kaleiçi. Investigation of Carrier Systems and Construction Material Properties of Public Buildings, Namık Kemal University, Institute of Science and Technology, Master Thesis, Tekirdag.
  • Sönmeztürk G. (2022). Kahramanmaraş (Center) Minarets, Mersin University, Institute of Social Sciences, Master Thesis, Mersin.
  • Soyluk A., Ilerisoy Z. Y. (2013). Dynamic analysis of Dolmabahce masonary clock tower. Gradevinar 65(4), pp. 345-352.
  • Şeker B.S., Çakır F., Doğangün A., Uysal H. (2014). Investigation of the structural performance of a masonry domed mosque by experimental tests and numerical analysis, Earthquakes and Structures, 6(4), pp. 335–350.
  • Toprak S., Zülfikar A.C., Karabulut S., Mutlu A., Tuğsal Ü. M., Nacaroğlu E., Ceylan M., Özdemir K., Parlak S. (2023). Strong Ground Motion After 6 February 2023 Maraş Earthquakes (Pazarcık Mw7.7 and Elbistan Mw7.6), Geotechnical, Preliminary Investigation Report of Field Observations on Superstructure and Infrastructure. GTU/ MARTEST (Marmara Application and Research Center for Disaster Resistant Structures), Gebze.
  • Türkiye Building Earthquake Regulation. (2018). Disaster and Emergency Management Presidency.
  • Usta P. (2021). Assessment of seismic behavior of historic masonry minarets in Antalya, Turkey. Case Studies in Construction Materials, 15.
  • USGS NEIC. (2023). The 2023 Kahramanmaraş, Turkey, Earthquake Sequence.
  • Yurdakul M., Yılmaz F., Artar M., Can Ö., Öner E., Daloğlu A.T. (2021). Investigation of time-history response of a historical masonry minaret under seismic loads, Structures, 30, pp. 265–276.
There are 34 citations in total.

Details

Primary Language English
Subjects History and Theory of the Built Environment
Journal Section Research Articles
Authors

Türkan Büşra Başar 0000-0003-0018-0008

Zeynep Yeşim İlerisoy 0000-0003-1903-9119

Mustafa Başar 0009-0005-2171-4170

Early Pub Date May 12, 2025
Publication Date September 29, 2025
Submission Date January 17, 2025
Acceptance Date May 12, 2025
Published in Issue Year 2025 Volume: 6 Issue: 2

Cite

APA Başar, T. B., İlerisoy, Z. Y., & Başar, M. (2025). The Effects of Earthquake Reality on Historical Minarets, Evaluations Specific to the February 06, 2023 Kahramanmaraş Earthquake. Cultural Heritage and Science, 6(2), 92-101. https://doi.org/10.58598/cuhes.1621203

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