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COMPARATIVE ANALYSES OF THE SOLAR ENERGY POTENTIALS OF GAZIANTEP, KONYA AND HATAY: A CASE STUDY FOR 1 MW OF PHOTOVOLTAIC SYSTEM

Year 2024, Volume: 9 Issue: 1, 1 - 11, 10.06.2024

Abstract

In recent times, there has been a rise in interest and research activities surrounding the topic of generating electricity from solar energy in our country. The installation of solar power plants has been increasing continuously, as a result of the numerous studies conducted to date. The purpose of this study is to compare various parameters for solar energy and 1 MW photovoltaic solar power plants in the provinces of Gaziantep, Konya and Hatay.
Additionally, this study calculates and compares hour angles and azimuth angles for the provinces of Gaziantep, Konya, and Hatay on the 21st of June, which is generally the solstice of the year. This day marks the beginning of summer or winter, representing the time when the sun reaches its highest or lowest point of the year.

References

  • [1] G. G. Dolf Gielen, Ricardo Gorini, Elisa Asmelash, Gayathri Prakash, Rodrigo Leme, “Future of solar photovoltaic: Deployment, investment, technology, grid integration and socio-economic aspects (A Global Energy Transformation: paper),” 2019. [Online]. Available: https://www.irena.org/media/Files/IRENA/Agency/Publication/2019/Oct/IRENA_Future_of_wind_ 2019.pdf
  • [2] Chowdhury, M. S., Rahman, K. S., Chowdhury, T., Nuthammachot, N., Techato, K., Akhtaruzzaman, M., ... & Amin, N. (2020). An overview of solar photovoltaic panels’ end-of-life material recycling. Energy Strategy Reviews, 27, 100431.
  • [3] Xu, X., Lai, D., Wang, W., & Wang, Y. (2022). A systematically integrated recycling and upgrading technology for waste crystalline silicon photovoltaic module. Resources, Conservation and Recycling, 182, 106284.
  • [4] G. E. and I. A. Adrian Whiteman, Dennis Akande, Nazik Elhassan, “Reneweble Energy Statistic 2023,” 2023. [Online]. Available: file:///C:/Users/Muhyeddin/Downloads/Statistical Review of World Energy.pdf
  • [5] “2022 FAALİYET RAPORU” (T.C. Enerji ve Tabi Kaynaklar Bakanlığı, 2022, https://enerji.gov.tr/bilgi-merkezi-yayinlar-faaliyet-raporlari)
  • [6] Enerji İşleri Genel Müdürlüğü, Güneş Enerjisi Potansiyeli Atlası (GEPA). (Erişim Tarihi: 16 Kasım 2023). http://www.yegm.gov.tr/MyCalculator/pages/27.aspx.
  • [7] Geyer, M., & Stine, W. B. (2001). Power from the Sun (Powerfromthesun. net). JT Lyle Center.
  • [8] Yağlı, H. & Koç, Y. (2020). Gaziantep Bölgesi İçin Güneş Enerjisinden Elektrik Üretiminde Kurulacak Panellerin Optimum Eğim Açılarının Belirlenmesi . Avrupa Bilim ve Teknoloji Dergisi , (19) , 475-483 . DOI: 10.31590/ejosat.733530
  • [9] Taze, H., Koç, Y., Yumrutaş, R., Koç, A., Yağlı, H. (2021). “Türkiye’de Aynı Enlem Üzerınde ve Farklı Coğrafı Bölgelerde Bulunan Üç Şehrın Optımum Panel Açılarının Kıyaslanması.” ULIBTK’21 Uluslararası Katılımlı 23. Isı Bilimi ve Tekniği Kongresi, 08-10 Eylül 2021, GAZİANTEP, (19) , 62-67.
Year 2024, Volume: 9 Issue: 1, 1 - 11, 10.06.2024

Abstract

References

  • [1] G. G. Dolf Gielen, Ricardo Gorini, Elisa Asmelash, Gayathri Prakash, Rodrigo Leme, “Future of solar photovoltaic: Deployment, investment, technology, grid integration and socio-economic aspects (A Global Energy Transformation: paper),” 2019. [Online]. Available: https://www.irena.org/media/Files/IRENA/Agency/Publication/2019/Oct/IRENA_Future_of_wind_ 2019.pdf
  • [2] Chowdhury, M. S., Rahman, K. S., Chowdhury, T., Nuthammachot, N., Techato, K., Akhtaruzzaman, M., ... & Amin, N. (2020). An overview of solar photovoltaic panels’ end-of-life material recycling. Energy Strategy Reviews, 27, 100431.
  • [3] Xu, X., Lai, D., Wang, W., & Wang, Y. (2022). A systematically integrated recycling and upgrading technology for waste crystalline silicon photovoltaic module. Resources, Conservation and Recycling, 182, 106284.
  • [4] G. E. and I. A. Adrian Whiteman, Dennis Akande, Nazik Elhassan, “Reneweble Energy Statistic 2023,” 2023. [Online]. Available: file:///C:/Users/Muhyeddin/Downloads/Statistical Review of World Energy.pdf
  • [5] “2022 FAALİYET RAPORU” (T.C. Enerji ve Tabi Kaynaklar Bakanlığı, 2022, https://enerji.gov.tr/bilgi-merkezi-yayinlar-faaliyet-raporlari)
  • [6] Enerji İşleri Genel Müdürlüğü, Güneş Enerjisi Potansiyeli Atlası (GEPA). (Erişim Tarihi: 16 Kasım 2023). http://www.yegm.gov.tr/MyCalculator/pages/27.aspx.
  • [7] Geyer, M., & Stine, W. B. (2001). Power from the Sun (Powerfromthesun. net). JT Lyle Center.
  • [8] Yağlı, H. & Koç, Y. (2020). Gaziantep Bölgesi İçin Güneş Enerjisinden Elektrik Üretiminde Kurulacak Panellerin Optimum Eğim Açılarının Belirlenmesi . Avrupa Bilim ve Teknoloji Dergisi , (19) , 475-483 . DOI: 10.31590/ejosat.733530
  • [9] Taze, H., Koç, Y., Yumrutaş, R., Koç, A., Yağlı, H. (2021). “Türkiye’de Aynı Enlem Üzerınde ve Farklı Coğrafı Bölgelerde Bulunan Üç Şehrın Optımum Panel Açılarının Kıyaslanması.” ULIBTK’21 Uluslararası Katılımlı 23. Isı Bilimi ve Tekniği Kongresi, 08-10 Eylül 2021, GAZİANTEP, (19) , 62-67.
There are 9 citations in total.

Details

Primary Language English
Subjects Solar Energy Systems, Energy Generation, Conversion and Storage (Excl. Chemical and Electrical)
Journal Section Research Article
Authors

Gülsüm Zengin This is me

Ali Koç This is me

Sultan Büşra Artaş 0009-0006-1954-2602

Özkan Köse This is me

Yıldız Koç This is me

Hüseyin Yağlı This is me

Publication Date June 10, 2024
Submission Date November 22, 2023
Acceptance Date January 5, 2024
Published in Issue Year 2024 Volume: 9 Issue: 1

Cite

APA Zengin, G., Koç, A., Artaş, S. B., Köse, Ö., et al. (2024). COMPARATIVE ANALYSES OF THE SOLAR ENERGY POTENTIALS OF GAZIANTEP, KONYA AND HATAY: A CASE STUDY FOR 1 MW OF PHOTOVOLTAIC SYSTEM. The International Journal of Energy and Engineering Sciences, 9(1), 1-11.

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