Araştırma Makalesi
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Sürdürülebilir Enerji ve Türkiye: Jeotermal Enerji ve Enerji Planlamasının Rolü

Yıl 2025, Cilt: 40 Sayı: 1, 239 - 249, 26.03.2025
https://doi.org/10.21605/cukurovaumfd.1666078

Öz

Bu makale, Türkiye'nin jeotermal enerji potansiyelini, mevcut durumunu ve gelecekteki rolünü inceleyerek özellikle Ege Bölgesi'ndeki zengin rezervlerine vurgu yapmaktadır. 2018-2023 verilerini kullanarak kurulu kapasitedeki artışı analiz etmekte ve yıllık yaklaşık 100 MW'lık bir artışla 2030 yılına kadar toplamda 2.500 MW’a ulaşacağını öngörmektedir. Özellikle enerji depolama ve verimlilik alanındaki yeni jeotermal teknolojiler, Türkiye’nin kapasitesini daha da artırması beklenmektedir. Türkiye'nin enerji planlamasında jeotermal enerjinin önemi, yalnızca elektrik üretiminin ötesine geçerek bölgesel ısıtma ve sera tarımına katkıda bulunurken, enerji güvenliğini güçlendirmekte ve yenilenebilir enerji hedeflerine ilerlemeyi desteklemektedir. Makale, jeotermal enerjinin sürdürülebilirlikteki rolünü vurgulayarak karbon emisyonlarını azaltma ve yerel kalkınmayı destekleme etkilerine değinmektedir. Sonuç olarak, Türkiye’nin jeotermal yatırımlarını artırması, yenilikçi teknolojileri benimsemesi ve sürdürülebilir stratejiler uygulaması gerektiği vurgulanmaktadır. Jeotermal enerji, Türkiye’nin enerji güvenliğini güçlendirmede ve sürdürülebilir kalkınma hedeflerine ulaşmada kilit bir kaynak olarak öne çıkmaktadır.

Kaynakça

  • 1. Barbier, E. (2002). Geothermal energy technology and current status: an overview. Renewable Sustainable Energy Reviews, 6(1-2), 3-65.
  • 2. Toklu, E.J.R.E. (2013). Overview of potential and utilization of renewable energy sources in Turkey. Renewable Energy. 50, 456-463.
  • 3. Toklu, E., Güney, M., Işık, M.,Comaklı, O. & Kaygusuz, K. (2010). Energy production, consumption, policies and recent developments in Turkey. Renewable Sustainable Energy Reviews, 14(4), 1172-1186.
  • 4. Kaygusuz, K. & Kaygusuz, A. (2004). Geothermal energy in Turkey: the sustainable future. Renewable Sustainable Energy Reviews, 8(6), 545-563.
  • 5. Melikoglu, M. (2017). Geothermal energy in Turkey and around the World: A review of the literature and an analysis based on Turkey's Vision 2023 energy targets. Renewable Sustainable Energy Reviews, 76, 485-492.
  • 6. Hepbasli, A. & Ozgener, L. (2004). Development of geothermal energy utilization in Turkey: a review. Renewable Sustainable Energy Reviews, 8(5), 433-460.
  • 7. Baba, A., Bundschuh, J. & Chandrasekharam, D. (2014). Geothermal systems and energy resources: Turkey and Greece. CRC Press.
  • 8. Yuksel, I. & Kaygusuz, K. (2011). Renewable energy sources for clean and sustainable energy policies in Turkey. Renewable Sustainable Energy Reviews, 15(8), 4132-4144.
  • 9. Ozturk, M. & Yuksel, Y.E. (2016). Energy structure of Turkey for sustainable development. Renewable Sustainable Energy Reviews, 53, 1259-1272.
  • 10. Kırlı, M.S. & Fahrioğlu, M. (2019). Sustainable development of Turkey: Deployment of geothermal resources for carbon capture, utilization, and storage. Energy Sources, Part A: Recovery, Utilization, Environmental Effects, 41(14), 1739-1751.
  • 11. Karaoğlu, Ö. (2024). Hasan dağı volkanı ve çiftlik-bozköy (orta anadolu) gömülü kalderasını besleyen aktif magma odalarına ilişkin ısı transferi analizleri. Türkiye Jeoloji Bülteni, 1-27.
  • 12. Şener, M.F., Uzelli, T., Akkuş, İ.,Mertoğlu, O. & Alper, B. (2023). The Potential, utilization, and development of Geothermal Energy in Türkiye. Bulletin of the Mineral Research and Exploration,(early view), 1-1.
  • 13. Işıksoluğu, M., Kurban, M. & Dokur, E. (2012). Jeotermal enerji santrallerinin Türkiye açısından değerlendirilmesi. ELECO '2012 Elektrik - Elektronik ve Bilgisayar Mühendisliği Sempozyumu, Bursa.
  • 14. Mertoglu, O., Simsek, S. & Basarir, N. Geothermal energy use: projections and country update for Turkey. In Proceedings World Geothermal Congress, 2020.
  • 15. Satman, A., Serpen, U. & Korkmaz, B. (2007). An update on geothermal energy potential of Turkey. In Thirty-Second Workshop on Geothermal Reservoir Engineering, Stanford University Stanford, California.
  • 16. Dinçer, İ. & Ezan, M. (2020). Tüba-jeotermal enerji teknolojileri raporu.
  • 17. Ocak, M., Ocak, Z., Bilgen, S., Keleş, S. & Kaygusuz, K. (2004). Energy utilization, environmental pollution and renewable energy sources in Turkey. Energy Conversion Management, 45(6), 845-864.
  • 18. Ozgur, M.A. (2008). Review of Turkey's renewable energy potential. Renewable Energy, 33(11), 2345-2356.
  • 19. Erdogdu, E. (2009). A snapshot of geothermal energy potential and utilization in Turkey. Renewable Sustainable Energy Reviews, 13(9), 2535-2543.
  • 20. Simsek, H.A. & Simsek, N. (2013). Recent incentives for renewable energy in Turkey. Energy Policy, 63, 521-530.
  • 21. Roche, V., Bouchot, V., Beccaletto, L., Jolivet, L., Guillou-Frottier, L.,Tuduri, J., Bozkurt, E., Oguz, K. & Tokay, B. (2019). Structural, lithological, and geodynamic controls on geothermal activity in the Menderes geothermal Province (Western Anatolia, Turkey). International Journal of Earth Sciences, 108(1), 301-328.
  • 22. Aşıcı, A.A. & Acar, S. (2022). Channels of cooperation between the EU and Turkey on green transformation. Ankara Avrupa Çalışmaları Dergisi, 21(1), 43-67.
  • 23. Okoroafor, E.R., Smith, C.M., Ochie, K.I., Nwosu, C.J., Gudmundsdottir, H. & Aljubran, M.J. (2022). Machine learning in subsurface geothermal energy: Two Decades in Review. Geothermics, 102, 102401.
  • 24. Hermans, T., Nguyen, F., Robert, T. & Revil, A. (2014). Geophysical methods for monitoring temperature changes in shallow low enthalpy geothermal systems. Energies, 7(7), 5083-5118.
  • 25. Kumari, W. & Ranjith, P. (2019). Sustainable development of enhanced geothermal systems based on geotechnical research-A review. Earth-Science Reviews, 199, 102955.
  • 26. Cui, G., Ren, S., Rui, Z., Ezekiel, J., Zhang, L. & Wang, H. (2018). The influence of complicated fluid-rock interactions on the geothermal exploitation in the CO2 plume geothermal system. Applied Energy, 227, 49- 63.
  • 27. Ciriaco, A.E., Zarrouk, S.J. & Zakeri, G. (2020). Geothermal resource and reserve assessment methodology: Overview, analysis and future directions. Renewable Sustainable Energy Reviews, 119, 109515.
  • 28. Shortall, R., Davidsdottir, B. & Axelsson, G.J.R. (2015). Geothermal energy for sustainable development: A review of sustainability impacts and assessment frameworks. Renewable and Sustainable Energy Eeviews, 44, 391-406.
  • 29. Clauser, C. & Ewert, M. (2018). The renewables cost challenge: Levelized cost of geothermal electric energy compared to other sources of primary energy-Review and case study. Renewable Sustainable Energy Reviews, 82, 3683-3693.
  • 30. Jeotermale Giden Adımlar, https://alj.com/tr/spotlight-by-fady-jameel/jeotermale-giden-adimlar//. Access date: 24.03.2025.
  • 31. Siddiqui, R., Anwar, H., Ullah, F., Ullah, R., Rehman, M.A., Jan, N. & Zaman, F. (2021). Power prediction of combined cycle power plant (CCPP) using machine learning algorithm‐based paradigm. Wireless Communications and Mobile Computing, 2021(1), 9966395.
  • 32. Podwojski, K., Fritsch, A., Chamrad, D.C., Paul, W., Sitek, B., Stühler, K., Mutzel, P., Stephan, C.,Meyer, H.E. & Urfer, W. (2009). Retention time alignment algorithms for LC/MS data must consider non-linear shifts. Bioinformatics, 25(6), 758-764.

Sustainable Energy and Turkey: The Role of Geothermal Energy and Energy Planning

Yıl 2025, Cilt: 40 Sayı: 1, 239 - 249, 26.03.2025
https://doi.org/10.21605/cukurovaumfd.1666078

Öz

This article examines Turkey's geothermal energy potential, current status, and future role, highlighting its vast reserves, particularly in the Aegean Region. Using data from 2018 to 2023, it analyzes the growth of installed capacity and forecasts an annual increase of approximately 100 MW, reaching around 2,500 MW by 2030. Recent advancements in geothermal technologies, especially in energy storage and efficiency, are expected to further enhance Turkey's capacity. The significance of geothermal energy in Turkey's energy planning goes beyond electricity generation, supporting regional heating and greenhouse farming while strengthening energy security and advancing renewable energy targets. The article highlights geothermal energy's role in sustainability, reducing carbon emissions, and supporting local development. In conclusion, the article stresses the need for Turkey to boost geothermal investment, adopt innovative technologies, and implement sustainable strategies. It highlights geothermal energy as a key resource in strengthening Turkey's energy security and achieving sustainable development goals.

Kaynakça

  • 1. Barbier, E. (2002). Geothermal energy technology and current status: an overview. Renewable Sustainable Energy Reviews, 6(1-2), 3-65.
  • 2. Toklu, E.J.R.E. (2013). Overview of potential and utilization of renewable energy sources in Turkey. Renewable Energy. 50, 456-463.
  • 3. Toklu, E., Güney, M., Işık, M.,Comaklı, O. & Kaygusuz, K. (2010). Energy production, consumption, policies and recent developments in Turkey. Renewable Sustainable Energy Reviews, 14(4), 1172-1186.
  • 4. Kaygusuz, K. & Kaygusuz, A. (2004). Geothermal energy in Turkey: the sustainable future. Renewable Sustainable Energy Reviews, 8(6), 545-563.
  • 5. Melikoglu, M. (2017). Geothermal energy in Turkey and around the World: A review of the literature and an analysis based on Turkey's Vision 2023 energy targets. Renewable Sustainable Energy Reviews, 76, 485-492.
  • 6. Hepbasli, A. & Ozgener, L. (2004). Development of geothermal energy utilization in Turkey: a review. Renewable Sustainable Energy Reviews, 8(5), 433-460.
  • 7. Baba, A., Bundschuh, J. & Chandrasekharam, D. (2014). Geothermal systems and energy resources: Turkey and Greece. CRC Press.
  • 8. Yuksel, I. & Kaygusuz, K. (2011). Renewable energy sources for clean and sustainable energy policies in Turkey. Renewable Sustainable Energy Reviews, 15(8), 4132-4144.
  • 9. Ozturk, M. & Yuksel, Y.E. (2016). Energy structure of Turkey for sustainable development. Renewable Sustainable Energy Reviews, 53, 1259-1272.
  • 10. Kırlı, M.S. & Fahrioğlu, M. (2019). Sustainable development of Turkey: Deployment of geothermal resources for carbon capture, utilization, and storage. Energy Sources, Part A: Recovery, Utilization, Environmental Effects, 41(14), 1739-1751.
  • 11. Karaoğlu, Ö. (2024). Hasan dağı volkanı ve çiftlik-bozköy (orta anadolu) gömülü kalderasını besleyen aktif magma odalarına ilişkin ısı transferi analizleri. Türkiye Jeoloji Bülteni, 1-27.
  • 12. Şener, M.F., Uzelli, T., Akkuş, İ.,Mertoğlu, O. & Alper, B. (2023). The Potential, utilization, and development of Geothermal Energy in Türkiye. Bulletin of the Mineral Research and Exploration,(early view), 1-1.
  • 13. Işıksoluğu, M., Kurban, M. & Dokur, E. (2012). Jeotermal enerji santrallerinin Türkiye açısından değerlendirilmesi. ELECO '2012 Elektrik - Elektronik ve Bilgisayar Mühendisliği Sempozyumu, Bursa.
  • 14. Mertoglu, O., Simsek, S. & Basarir, N. Geothermal energy use: projections and country update for Turkey. In Proceedings World Geothermal Congress, 2020.
  • 15. Satman, A., Serpen, U. & Korkmaz, B. (2007). An update on geothermal energy potential of Turkey. In Thirty-Second Workshop on Geothermal Reservoir Engineering, Stanford University Stanford, California.
  • 16. Dinçer, İ. & Ezan, M. (2020). Tüba-jeotermal enerji teknolojileri raporu.
  • 17. Ocak, M., Ocak, Z., Bilgen, S., Keleş, S. & Kaygusuz, K. (2004). Energy utilization, environmental pollution and renewable energy sources in Turkey. Energy Conversion Management, 45(6), 845-864.
  • 18. Ozgur, M.A. (2008). Review of Turkey's renewable energy potential. Renewable Energy, 33(11), 2345-2356.
  • 19. Erdogdu, E. (2009). A snapshot of geothermal energy potential and utilization in Turkey. Renewable Sustainable Energy Reviews, 13(9), 2535-2543.
  • 20. Simsek, H.A. & Simsek, N. (2013). Recent incentives for renewable energy in Turkey. Energy Policy, 63, 521-530.
  • 21. Roche, V., Bouchot, V., Beccaletto, L., Jolivet, L., Guillou-Frottier, L.,Tuduri, J., Bozkurt, E., Oguz, K. & Tokay, B. (2019). Structural, lithological, and geodynamic controls on geothermal activity in the Menderes geothermal Province (Western Anatolia, Turkey). International Journal of Earth Sciences, 108(1), 301-328.
  • 22. Aşıcı, A.A. & Acar, S. (2022). Channels of cooperation between the EU and Turkey on green transformation. Ankara Avrupa Çalışmaları Dergisi, 21(1), 43-67.
  • 23. Okoroafor, E.R., Smith, C.M., Ochie, K.I., Nwosu, C.J., Gudmundsdottir, H. & Aljubran, M.J. (2022). Machine learning in subsurface geothermal energy: Two Decades in Review. Geothermics, 102, 102401.
  • 24. Hermans, T., Nguyen, F., Robert, T. & Revil, A. (2014). Geophysical methods for monitoring temperature changes in shallow low enthalpy geothermal systems. Energies, 7(7), 5083-5118.
  • 25. Kumari, W. & Ranjith, P. (2019). Sustainable development of enhanced geothermal systems based on geotechnical research-A review. Earth-Science Reviews, 199, 102955.
  • 26. Cui, G., Ren, S., Rui, Z., Ezekiel, J., Zhang, L. & Wang, H. (2018). The influence of complicated fluid-rock interactions on the geothermal exploitation in the CO2 plume geothermal system. Applied Energy, 227, 49- 63.
  • 27. Ciriaco, A.E., Zarrouk, S.J. & Zakeri, G. (2020). Geothermal resource and reserve assessment methodology: Overview, analysis and future directions. Renewable Sustainable Energy Reviews, 119, 109515.
  • 28. Shortall, R., Davidsdottir, B. & Axelsson, G.J.R. (2015). Geothermal energy for sustainable development: A review of sustainability impacts and assessment frameworks. Renewable and Sustainable Energy Eeviews, 44, 391-406.
  • 29. Clauser, C. & Ewert, M. (2018). The renewables cost challenge: Levelized cost of geothermal electric energy compared to other sources of primary energy-Review and case study. Renewable Sustainable Energy Reviews, 82, 3683-3693.
  • 30. Jeotermale Giden Adımlar, https://alj.com/tr/spotlight-by-fady-jameel/jeotermale-giden-adimlar//. Access date: 24.03.2025.
  • 31. Siddiqui, R., Anwar, H., Ullah, F., Ullah, R., Rehman, M.A., Jan, N. & Zaman, F. (2021). Power prediction of combined cycle power plant (CCPP) using machine learning algorithm‐based paradigm. Wireless Communications and Mobile Computing, 2021(1), 9966395.
  • 32. Podwojski, K., Fritsch, A., Chamrad, D.C., Paul, W., Sitek, B., Stühler, K., Mutzel, P., Stephan, C.,Meyer, H.E. & Urfer, W. (2009). Retention time alignment algorithms for LC/MS data must consider non-linear shifts. Bioinformatics, 25(6), 758-764.
Toplam 32 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Enerji
Bölüm Makaleler
Yazarlar

Manolya Güldürek 0000-0002-6906-6986

Yayımlanma Tarihi 26 Mart 2025
Gönderilme Tarihi 4 Şubat 2025
Kabul Tarihi 25 Mart 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 40 Sayı: 1

Kaynak Göster

APA Güldürek, M. (2025). Sustainable Energy and Turkey: The Role of Geothermal Energy and Energy Planning. Çukurova Üniversitesi Mühendislik Fakültesi Dergisi, 40(1), 239-249. https://doi.org/10.21605/cukurovaumfd.1666078