Türkiye’de Birden Çok Kaynaklı Elektrik Üretim Mevzuatının Kapasite Kısıtları ve Gerçekleşmeler Bazında Değerlendirilmesi
Year 2025,
EARLY VIEW, 1 - 1
Mehmet Yalılı
,
Tayfun Menlik
,
Fatih Emre Boran
Abstract
Aynı şebeke altyapısını ve santral sahasını kullanan, yaratıcı enerji teknolojileri olan birden çok kaynaklı elektrik üretim sistemleri, birden fazla enerji kaynağının tek bir santralde kullanılmasını sağlar. Sistem maliyetlerini düşürmenin yanı sıra daha sürdürülebilir ve esnek elektrik üretimini teşvik ederek şebeke kararlılığını artırır. Türkiye'de bu sistemlere yönelik kapasite tahsis prosedürü tahsis edilebilir kapasitelerin sınırlı olması nedeniyle zorludur. Bu çalışma, çeşitli ana ve yardımcı kaynak türlerine ilişkin kapasite tahsis mekanizmalarına odaklanarak Türkiye elektrik piyasasında hibrit elektrik üretimine ilişkin düzenlemelerin kapsamlı bir incelemesini sunmaktadır. Lisans verilen proje ve gerçekleşmelere ilişkin verilerin derlenmesinde Enerji Piyasası Düzenleme Kurumu (EPDK) veri tabanından yararlanılmıştır. Elde edilen bulgulara göre, on iki bağlantı bölgesindeki toplam azami yardımcı kaynak kapasitesinin %6,4’ünün lisans tadili tamamlanmıştır. Benzer şekilde, ana kaynağı rüzgar veya güneşe dayalı olmayıp, yardımcı kaynağı rüzgar veya güneşe dayalı olan hibrit sistemlere mevcut kapasitenin %34,7'si tahsis edilmiştir. En fazla kapasitenin tahsis edildiği hibrit sistem konfigürasyonunun ise Rüzgar+FV Güneş şeklinde olduğu görülmüştür.
References
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[1] Elhadidy M. A. and Shaahid S. M., ''Parametric study of hybrid (wind + solar + diesel) power generating systems'', Renewable Energy, 21(2): 129–139, (2000).
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[2] International Energy Agency (IEA), ''Renewables 2023-Analysis and forecast to 2028''. [Online]. Available:https://iea.blob.core.windows.net/assets/96d66a8b-d502-476b-ba94-54ffda84cf72/ Renewables_2023.pdf, (2024).
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[3] Deshmukh M. K. and Deshmukh S. S., ''Modeling of hybrid renewable energy systems'', Renewable and Sustainable Energy Reviews, 12(1): 235–249, (2008).
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[4] Erdinc O. and Uzunoglu M., ''Optimum design of hybrid renewable energy systems: Overview of different approaches'', Renewable and Sustainable Energy Reviews, 16(3): 1412–1425, (2012).
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[5] Shivarama Krishna K. and Sathish Kumar K., ''A review on hybrid renewable energy systems'', Renewable and Sustainable Energy Reviews, 52: 907–916, (2015).
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[6] León Gómez J. C., De León Aldaco S. E. and Aguayo Alquicira J. A., ''Review of Hybrid Renewable Energy Systems: Architectures, Battery Systems, and Optimization Techniques'', Eng, 4(2): 1446-1467, (2023).
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[7] Manwell J. F., ''Hybrid Energy Systems'', Encyclopedia of Energy, 215–229, (2004).
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[8] Come Zebra E. I., van der Windt H. J., Nhumaio G. and Faaij A. P. C., ''A review of hybrid renewable energy systems in mini-grids for off-grid electrification in developing countries'', Renewable and Sustainable Energy Reviews, 144, 111036, (2021).
-
[9] Hassan Q., Algburi S., Sameen A. Z., Salman H. M. and Jaszczur M., ''A review of hybrid renewable energy systems: Solar and wind-powered solutions: Challenges, opportunities, and policy implications'', Results in Engineering, 20, 101621, (2023).
-
[10] Tabak A., ''Analysis and Design of a Hybrid Energy Production System to Meet the Energy Demand of a Plant in Konya'', International Journal of Engineering Research and Development, 13(1): 220-230, (2021).
-
[11] Shahzad M. K., Zahid A., Rashid T., Rehan M. A., Ali M. and Ahmad M., ''Techno-economic feasibility analysis of a solar-biomass off grid system for the electrification of remote rural areas in Pakistan using HOMER software'', Renewable Energy, 106: 264–273, (2017).
-
[12] Dursun S., ''Biyokütle-Rüzgâr-Güneş Hibrit Güç Üretim Sistemi Kullanılarak Kırklareli Üniversitesi Kayalı Yerleşkesinin Tekno-Ekonomik Açıdan Değerlendirilmesi'', Master’s Thesis, Kırklareli University, Graduate School of Natural and Applied Sciences, (2016).
-
[13] Republic of Türkiye Ministry of Energy and Natural Resources (MENR), ''Türkiye National Energy Plan''. [Online]. Available: https://enerji.gov.tr/Media/Dizin/EIGM/tr/Raporlar/TUEP/T%C3%BCrkiye_National_Energy_Plan.pdf, (2022).
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[14] E-mevzuat, ''By Law for Electricity Market Licensing''. [Online]. Available: https://mevzuat.gov.tr/mevzuat?MevzuatNo=18985&MevzuatTur=7&MevzuatTertip=5, (2024).
-
[15] E-mevzuat, ''Electricity Market Law (Law No: 6446)''. [Online]. Available: https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=6446&MevzuatTur=1&MevzuatTertip=5, (2024).
-
[16] Kurtar O. and Gözen M. ''Evaluation of Hybrid Electricity Generation from the Regulatory Perspective and Recommendations for Turkey'', ACU International Journal of Social Sciences, 7(1), 84-100, (2021).
-
[17] Montoya L. T., Lain S., Issa M. and Ilinca A. ''4-Renewable energy systems'', Hybrid Renewable Energy Systems and Microgrids, Academic Press, 103-177, (2021).
-
[18] Official Gazette, ''Law on Amendments of the Mining Law and Some Other Laws (Law No: 7164)''. [Online]. Available:https://www.resmigazete.gov.tr/eskiler/2019/02/20190228-6.htm, (2019).
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[19] Official Gazette, ''By-Law for the Amendment of the By-Law for Electricity Market Licensing''. [Online]. Available:https://www.resmigazete.gov.tr/eskiler/2020/03/20200308-7.htm, (2020).
-
[20] Official Gazette, ''By-Law for the Amendment of the By-Law for Certification and Support of Renewable Energy Resources''. [Online]. Available: https://www.resmigazete.gov.tr/eskiler/2020/03/20200308-8.htm, (2020).
-
[21] EMRA, ''The Principles and Procedures for Determining Power Plant Sites of Prelicensed and Licensed Power Plants''. [Online]. Available: https://www.epdk.gov.tr/Detay/Icerik/3-0-41-3/usul-ve-esaslar, (2020).
-
[22] E-mevzuat, ''Law on Utilization of Renewable Energy Resources for the Generation of Electricity (Law No: 5346)''. [Online]. Available: https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=5346&MevzuatTur=1&MevzuatTertip=5, (2024).
-
[23] E-mevzuat, ''By-Law for Certification and Support of Renewable Energy Resources''. [Online]. Available: https://mevzuat.gov.tr/mevzuat?MevzuatNo=18907&MevzuatTur=7&MevzuatTertip=5, (2024).
-
[24] TEIAS, ''Notices for the Allowable Capacities for the Auxiliary Sources of the Hybrid Energy Systems''. [Online]. Available: https://www.teias.gov.tr/duyurular, (2021).
-
[25] EMRA, ''Database of Electricity Generation Licenses''. [Online]. Available: https://lisans.epdk.gov.tr/epvys-web/faces/pages/lisans/elektrikUretim/elektrikUretimOzetSorgula.xhtml, (2024).
-
[26] TEIAS, ''Türkiye Electricity Statistics''. [Online]. Available:https://ytbsbilgi.teias.gov.tr/ytbsbilgi/frm_istatistikler.jsf, (2024).
-
[27] EMRA, ''Final YEKDEM List for 2024''. [Online]. Available: https://www.epdk.gov.tr/Detay/Icerik/3-0-72-3/elektrikyekdem, (2024).
-
[28] Gubański A., Sobkowiak A., Jasiński M., Kaczorowska D., Janik P., Kostyła P., Leonowicz Z., Rezmer J., Sikorski T. and Suresh V. ''Hybrid Power Plant with Storage System: University Research Station'', Periodica Polytechnica Electrical Engineering and Computer Science, 64(1), 47–52, (2019).
-
[29] Roy D., Bhowmik M. and Roskilly A. P. ''Technoeconomic, environmental and multi criteria decision making investigations for optimisation of off-grid hybrid renewable energy system with green hydrogen production'', Journal of Cleaner Production, 443, 141033, (2024).
Assessment of Multi-Source Electricity Production Regulation in Türkiye Based on Capacity Constraints and Realizations
Year 2025,
EARLY VIEW, 1 - 1
Mehmet Yalılı
,
Tayfun Menlik
,
Fatih Emre Boran
Abstract
Multi-source electricity production systems, which are inventive energy technologies utilizing the same grid infrastructure and power plant site, enable the integration of multiple resources within a single power plant. They enhance grid stability by promoting more sustainable and flexible electricity production, in addition to reducing system costs. The capacity allocation procedure for these systems is challenging in Türkiye because of the limited allowable capacities. The present study offers a comprehensive examination of the regulation of hybrid electricity production in the Turkish electricity market, with a particular focus on the mechanisms for capacity allocation in relation to a variety of primary and secondary source types. The Energy Market Regulatory Authority (EMRA) database was utilized to compile data on licensed projects and realizations. According to the findings, license amendment of 6.4% of the maximum allocable capacity in twelve connection regions was completed. Likewise, 34.7% of the allocable capacity was granted for hybrid systems that have primary sources that are not based on wind or solar, but have an auxiliary source that is based on wind or solar. The Wind+Solar PV hybrid system has the highest capacity allocations.
Ethical Statement
The authors of this article declare that the materials and methods used in this study do not require ethical committee permission and/or legal-special permission.
References
-
[1] Elhadidy M. A. and Shaahid S. M., ''Parametric study of hybrid (wind + solar + diesel) power generating systems'', Renewable Energy, 21(2): 129–139, (2000).
-
[2] International Energy Agency (IEA), ''Renewables 2023-Analysis and forecast to 2028''. [Online]. Available:https://iea.blob.core.windows.net/assets/96d66a8b-d502-476b-ba94-54ffda84cf72/ Renewables_2023.pdf, (2024).
-
[3] Deshmukh M. K. and Deshmukh S. S., ''Modeling of hybrid renewable energy systems'', Renewable and Sustainable Energy Reviews, 12(1): 235–249, (2008).
-
[4] Erdinc O. and Uzunoglu M., ''Optimum design of hybrid renewable energy systems: Overview of different approaches'', Renewable and Sustainable Energy Reviews, 16(3): 1412–1425, (2012).
-
[5] Shivarama Krishna K. and Sathish Kumar K., ''A review on hybrid renewable energy systems'', Renewable and Sustainable Energy Reviews, 52: 907–916, (2015).
-
[6] León Gómez J. C., De León Aldaco S. E. and Aguayo Alquicira J. A., ''Review of Hybrid Renewable Energy Systems: Architectures, Battery Systems, and Optimization Techniques'', Eng, 4(2): 1446-1467, (2023).
-
[7] Manwell J. F., ''Hybrid Energy Systems'', Encyclopedia of Energy, 215–229, (2004).
-
[8] Come Zebra E. I., van der Windt H. J., Nhumaio G. and Faaij A. P. C., ''A review of hybrid renewable energy systems in mini-grids for off-grid electrification in developing countries'', Renewable and Sustainable Energy Reviews, 144, 111036, (2021).
-
[9] Hassan Q., Algburi S., Sameen A. Z., Salman H. M. and Jaszczur M., ''A review of hybrid renewable energy systems: Solar and wind-powered solutions: Challenges, opportunities, and policy implications'', Results in Engineering, 20, 101621, (2023).
-
[10] Tabak A., ''Analysis and Design of a Hybrid Energy Production System to Meet the Energy Demand of a Plant in Konya'', International Journal of Engineering Research and Development, 13(1): 220-230, (2021).
-
[11] Shahzad M. K., Zahid A., Rashid T., Rehan M. A., Ali M. and Ahmad M., ''Techno-economic feasibility analysis of a solar-biomass off grid system for the electrification of remote rural areas in Pakistan using HOMER software'', Renewable Energy, 106: 264–273, (2017).
-
[12] Dursun S., ''Biyokütle-Rüzgâr-Güneş Hibrit Güç Üretim Sistemi Kullanılarak Kırklareli Üniversitesi Kayalı Yerleşkesinin Tekno-Ekonomik Açıdan Değerlendirilmesi'', Master’s Thesis, Kırklareli University, Graduate School of Natural and Applied Sciences, (2016).
-
[13] Republic of Türkiye Ministry of Energy and Natural Resources (MENR), ''Türkiye National Energy Plan''. [Online]. Available: https://enerji.gov.tr/Media/Dizin/EIGM/tr/Raporlar/TUEP/T%C3%BCrkiye_National_Energy_Plan.pdf, (2022).
-
[14] E-mevzuat, ''By Law for Electricity Market Licensing''. [Online]. Available: https://mevzuat.gov.tr/mevzuat?MevzuatNo=18985&MevzuatTur=7&MevzuatTertip=5, (2024).
-
[15] E-mevzuat, ''Electricity Market Law (Law No: 6446)''. [Online]. Available: https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=6446&MevzuatTur=1&MevzuatTertip=5, (2024).
-
[16] Kurtar O. and Gözen M. ''Evaluation of Hybrid Electricity Generation from the Regulatory Perspective and Recommendations for Turkey'', ACU International Journal of Social Sciences, 7(1), 84-100, (2021).
-
[17] Montoya L. T., Lain S., Issa M. and Ilinca A. ''4-Renewable energy systems'', Hybrid Renewable Energy Systems and Microgrids, Academic Press, 103-177, (2021).
-
[18] Official Gazette, ''Law on Amendments of the Mining Law and Some Other Laws (Law No: 7164)''. [Online]. Available:https://www.resmigazete.gov.tr/eskiler/2019/02/20190228-6.htm, (2019).
-
[19] Official Gazette, ''By-Law for the Amendment of the By-Law for Electricity Market Licensing''. [Online]. Available:https://www.resmigazete.gov.tr/eskiler/2020/03/20200308-7.htm, (2020).
-
[20] Official Gazette, ''By-Law for the Amendment of the By-Law for Certification and Support of Renewable Energy Resources''. [Online]. Available: https://www.resmigazete.gov.tr/eskiler/2020/03/20200308-8.htm, (2020).
-
[21] EMRA, ''The Principles and Procedures for Determining Power Plant Sites of Prelicensed and Licensed Power Plants''. [Online]. Available: https://www.epdk.gov.tr/Detay/Icerik/3-0-41-3/usul-ve-esaslar, (2020).
-
[22] E-mevzuat, ''Law on Utilization of Renewable Energy Resources for the Generation of Electricity (Law No: 5346)''. [Online]. Available: https://www.mevzuat.gov.tr/mevzuat?MevzuatNo=5346&MevzuatTur=1&MevzuatTertip=5, (2024).
-
[23] E-mevzuat, ''By-Law for Certification and Support of Renewable Energy Resources''. [Online]. Available: https://mevzuat.gov.tr/mevzuat?MevzuatNo=18907&MevzuatTur=7&MevzuatTertip=5, (2024).
-
[24] TEIAS, ''Notices for the Allowable Capacities for the Auxiliary Sources of the Hybrid Energy Systems''. [Online]. Available: https://www.teias.gov.tr/duyurular, (2021).
-
[25] EMRA, ''Database of Electricity Generation Licenses''. [Online]. Available: https://lisans.epdk.gov.tr/epvys-web/faces/pages/lisans/elektrikUretim/elektrikUretimOzetSorgula.xhtml, (2024).
-
[26] TEIAS, ''Türkiye Electricity Statistics''. [Online]. Available:https://ytbsbilgi.teias.gov.tr/ytbsbilgi/frm_istatistikler.jsf, (2024).
-
[27] EMRA, ''Final YEKDEM List for 2024''. [Online]. Available: https://www.epdk.gov.tr/Detay/Icerik/3-0-72-3/elektrikyekdem, (2024).
-
[28] Gubański A., Sobkowiak A., Jasiński M., Kaczorowska D., Janik P., Kostyła P., Leonowicz Z., Rezmer J., Sikorski T. and Suresh V. ''Hybrid Power Plant with Storage System: University Research Station'', Periodica Polytechnica Electrical Engineering and Computer Science, 64(1), 47–52, (2019).
-
[29] Roy D., Bhowmik M. and Roskilly A. P. ''Technoeconomic, environmental and multi criteria decision making investigations for optimisation of off-grid hybrid renewable energy system with green hydrogen production'', Journal of Cleaner Production, 443, 141033, (2024).