Research Article
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Year 2019, Volume: 4 Issue: 1, 2 - 11, 11.03.2020
https://doi.org/10.23884/IJESG.2019.4.1.01

Abstract

References

  • [1] KANLI, İ. B.,& KAPLAN, B. (2018). Yenilenebilir Enerji Kaynaklarının Etkin Kullanımı İçin Bir Model Önerisi: Şehir Enerji Kooperatifleri. Research Journal of Politics, Economics & Management/Siyaset, Ekonomi ve Yönetim Arastirmalari Dergisi, 6(4).
  • [2] Yılmaz, İlker, Mustafa İlbaş ve Şükrü Su (2003), “Türkiye Rüzgar Enerjisi Potansiyelinin Değerlendirilmesi”, Yeni ve Yenilenebilir Enerji Kaynakları Sempozyumu, TMMOB, 3-4 Ekim 2003, Kayseri, ss. 399-401.
  • [3] Gupta, Avijit (1993), “Üçüncü Dünya Ülkelerinde Çevre ve Kalkınma” (Çev. Şükrü Alpagut), Kabalcı Yayınları, İstanbul.
  • [4] Özçelik. M.A, Karalı. İ, Kabul. A. (2018). The Comparative Analysis of Natural Gas, Lpg, and Gasoline in Generating on-Site Electricity for Residences, The International Journal of Energy Engineering Sciences, 3(1), pp.16-24.
  • [5] Özkaya, Simla Yasemin (2004), “Yenilenebilir Enerji Kaynakları”, Uluslararası Ekonomik Sorunlar Dergisi, S. 14, Access Date: 15.08.2018: http://www.mfa.gov.tr/yenilenebilir-enerji-kaynaklari.tr.mfa
  • [6] Çakmak, R., Altas, I. H., “Erzincan’da Güneş Enerjisinden Elektrik Üretimi Potansiyeli: Almanya İle Karşılaştırılması” Uluslararası Erzincan Sempozyumu, Erzincan, 2017: 407- 419.
  • [7] X. Ju, C. Xu, Y. Hu, et al.Areview on thedevelopment of photovoltaic/concentrated solar power (PV-CSP) hybridsystems, Sol Energy Mater Sol Cells, 161 (2017), pp. 305-327
  • [8] Avrupa Birliği Yenilenebilir Enerji Raporu açıklandı, Access Date: 08.11.2019 http://enerjienstitusu.de/2018/02/23/avrupa-birligi-yenilenebilir-enerji-raporu-aciklandi/
  • [9] GLOBAL ENERGY NETWORK INSTITUTE (GENI), (Is 100% Renewable Energy possible for Germany by 2020?), Access Date: 08.11.2019 https://www.geni.org/globalenergy/research/renewable-energy-potential-of germany/Germany_Final_PBMfinal.pdf
  • [10] D. Zhang, J. Wang, Y. Lin, etal.Present situation and future prospect of renewable energy in China. Renew Sustain Energy Rev, 76 (2017), pp. 865-871
  • [11] How China’sgiant solar farmsaretransforming World energy, Access Date: 08.11.2019, http://www.bbc.com/future/story/20180822-why-china-is-transforming-the-worlds-solar-energy
  • [12] Ülkemiz, Coğrafi Konumu Nedeniyle Yüksek Güneş Enerjisi Potansiyeline Sahiptir, T.C. Enerji ve Tabi Kaynaklar Bakanlığı, Access Date: 08.11.2019 http://www.enerji.gov.tr/tr-TR/Sayfalar/Gunes
  • [13] ALCAN, Y , DEMİR, M , DUMAN, S . (2018). Sinop İlinin Güneş Enerjisinden Elektrik Üretim Potansiyelinin Ülkemiz Ve Almanya İle Karşılaştırarak İncelenmesi. El-CezeriJournal of Science and Engineering, 5 (1), 35-44. DOI: 10.31202/ecjse.340459
  • [14] Güneş Enerjisi Sanayicileri ve Endüstrisi Derneği, Access Date: 08.11.2019 http://www.gensed.org/basin/basin-aciklamasi-24.12.2018[15] Cynthia E.L. Latunussa, Fulvio Ardente, GianAndreaBlengini, Lucia Mancini, Life Cycle Assessment of an innovative recycling process for crystalline silicon photovoltaic panels, Solar Energy Material sand Solar Cells, Volume 156, 2016, pp. 101-111
  • [16] International Renewable Energy Agancy (IRENA), Access Date: 08.11.2019, https://www.irena.org/
  • [17] Fraunhofer ISE, Net installed electricity generation capacity in Germany, Access Date: 08.11.2019, https://www.energy-charts.de/power_inst.htm
  • [18] Wikipedia, Solar Power in China, Access Date: 08.11.2019 https://en.wikipedia.org/wiki/Solar_power_in_China
  • [19] Karagöl, E.T. Kavaz, İ., Dünyada ve Türkiye’de Yenilenebilir Enerji, Siyaset, Ekonomi ve Toplum Araştırmaları vakfı (SETA), Analiz, Nisan 2017, Sayı: 197
  • [20] 2018 Snapshot of Global Photovoltaic Markets, Report IEA PVPS T1-35:2019, Access Date: 08.11.2019, http://www.iea-pvps.org/Snapshot2019-Report.pdf
  • [21] TMMOB Elektrik mühendisleri odası, Enerji İstatistikleri, (31 ocak 2019), Access Date: 08.11.2019, https://www.enerjiportali.com/wpcontent/uploads/2018/12/enerji_istastikleri.pdf

OVERVIEW OF SOLAR ENERGY CONVERSION IN TURKEY

Year 2019, Volume: 4 Issue: 1, 2 - 11, 11.03.2020
https://doi.org/10.23884/IJESG.2019.4.1.01

Abstract

According to global energy
statistics, the amount of energy consumed increased from 8557 Million Tons of
Equivalent oil (mtep) in 1990 to 13509 mtep in 2016. Research has shown that
life span of 200 years of coal, 40 years of oil and 60 years of natural gas.
Therefore, it is foreseen that fossil fuels will not be able to respond to the
increase in energy needs and will fall behind energy consumption. because of
this reason, it has been considere important to search for new energy sources
to prevent future energy crises. Today, it can be said that this searching
mostly focuses on renewable energy sources.



Research suggests that renewable
energy will constitute approximately 40% of total energy in the future.
Although the importance of hydroelectric and wind energy from renewable energy
sources has been understood much earlier, it is seen that the importance of
solar energy has been realized in recent years. It is estimated that the
highest increase in renewable energy sources between 2012 and 2040 in
electricity generation will be in solar energy. Based on the years 2010 and
2018, while in 2010 was obtained 40,871 MW energy from the solar and 180,854 MW
energy from the wind, but in 2018 was obtained 485,826 MW energy from the solar
and 563,726 MW energy from the wind. According to these results, the energy
obtained from the solar has increased approximately 12 times in the last nine
years, while the energy obtained from the wind has increased approximately 4
times.

References

  • [1] KANLI, İ. B.,& KAPLAN, B. (2018). Yenilenebilir Enerji Kaynaklarının Etkin Kullanımı İçin Bir Model Önerisi: Şehir Enerji Kooperatifleri. Research Journal of Politics, Economics & Management/Siyaset, Ekonomi ve Yönetim Arastirmalari Dergisi, 6(4).
  • [2] Yılmaz, İlker, Mustafa İlbaş ve Şükrü Su (2003), “Türkiye Rüzgar Enerjisi Potansiyelinin Değerlendirilmesi”, Yeni ve Yenilenebilir Enerji Kaynakları Sempozyumu, TMMOB, 3-4 Ekim 2003, Kayseri, ss. 399-401.
  • [3] Gupta, Avijit (1993), “Üçüncü Dünya Ülkelerinde Çevre ve Kalkınma” (Çev. Şükrü Alpagut), Kabalcı Yayınları, İstanbul.
  • [4] Özçelik. M.A, Karalı. İ, Kabul. A. (2018). The Comparative Analysis of Natural Gas, Lpg, and Gasoline in Generating on-Site Electricity for Residences, The International Journal of Energy Engineering Sciences, 3(1), pp.16-24.
  • [5] Özkaya, Simla Yasemin (2004), “Yenilenebilir Enerji Kaynakları”, Uluslararası Ekonomik Sorunlar Dergisi, S. 14, Access Date: 15.08.2018: http://www.mfa.gov.tr/yenilenebilir-enerji-kaynaklari.tr.mfa
  • [6] Çakmak, R., Altas, I. H., “Erzincan’da Güneş Enerjisinden Elektrik Üretimi Potansiyeli: Almanya İle Karşılaştırılması” Uluslararası Erzincan Sempozyumu, Erzincan, 2017: 407- 419.
  • [7] X. Ju, C. Xu, Y. Hu, et al.Areview on thedevelopment of photovoltaic/concentrated solar power (PV-CSP) hybridsystems, Sol Energy Mater Sol Cells, 161 (2017), pp. 305-327
  • [8] Avrupa Birliği Yenilenebilir Enerji Raporu açıklandı, Access Date: 08.11.2019 http://enerjienstitusu.de/2018/02/23/avrupa-birligi-yenilenebilir-enerji-raporu-aciklandi/
  • [9] GLOBAL ENERGY NETWORK INSTITUTE (GENI), (Is 100% Renewable Energy possible for Germany by 2020?), Access Date: 08.11.2019 https://www.geni.org/globalenergy/research/renewable-energy-potential-of germany/Germany_Final_PBMfinal.pdf
  • [10] D. Zhang, J. Wang, Y. Lin, etal.Present situation and future prospect of renewable energy in China. Renew Sustain Energy Rev, 76 (2017), pp. 865-871
  • [11] How China’sgiant solar farmsaretransforming World energy, Access Date: 08.11.2019, http://www.bbc.com/future/story/20180822-why-china-is-transforming-the-worlds-solar-energy
  • [12] Ülkemiz, Coğrafi Konumu Nedeniyle Yüksek Güneş Enerjisi Potansiyeline Sahiptir, T.C. Enerji ve Tabi Kaynaklar Bakanlığı, Access Date: 08.11.2019 http://www.enerji.gov.tr/tr-TR/Sayfalar/Gunes
  • [13] ALCAN, Y , DEMİR, M , DUMAN, S . (2018). Sinop İlinin Güneş Enerjisinden Elektrik Üretim Potansiyelinin Ülkemiz Ve Almanya İle Karşılaştırarak İncelenmesi. El-CezeriJournal of Science and Engineering, 5 (1), 35-44. DOI: 10.31202/ecjse.340459
  • [14] Güneş Enerjisi Sanayicileri ve Endüstrisi Derneği, Access Date: 08.11.2019 http://www.gensed.org/basin/basin-aciklamasi-24.12.2018[15] Cynthia E.L. Latunussa, Fulvio Ardente, GianAndreaBlengini, Lucia Mancini, Life Cycle Assessment of an innovative recycling process for crystalline silicon photovoltaic panels, Solar Energy Material sand Solar Cells, Volume 156, 2016, pp. 101-111
  • [16] International Renewable Energy Agancy (IRENA), Access Date: 08.11.2019, https://www.irena.org/
  • [17] Fraunhofer ISE, Net installed electricity generation capacity in Germany, Access Date: 08.11.2019, https://www.energy-charts.de/power_inst.htm
  • [18] Wikipedia, Solar Power in China, Access Date: 08.11.2019 https://en.wikipedia.org/wiki/Solar_power_in_China
  • [19] Karagöl, E.T. Kavaz, İ., Dünyada ve Türkiye’de Yenilenebilir Enerji, Siyaset, Ekonomi ve Toplum Araştırmaları vakfı (SETA), Analiz, Nisan 2017, Sayı: 197
  • [20] 2018 Snapshot of Global Photovoltaic Markets, Report IEA PVPS T1-35:2019, Access Date: 08.11.2019, http://www.iea-pvps.org/Snapshot2019-Report.pdf
  • [21] TMMOB Elektrik mühendisleri odası, Enerji İstatistikleri, (31 ocak 2019), Access Date: 08.11.2019, https://www.enerjiportali.com/wpcontent/uploads/2018/12/enerji_istastikleri.pdf
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Details

Primary Language English
Subjects Energy Systems Engineering (Other)
Journal Section Research Article
Authors

Mehmet Ali Özçelik 0000-0003-0984-5707

İsmail Karalı This is me

Ahmet Kabul

Publication Date March 11, 2020
Published in Issue Year 2019 Volume: 4 Issue: 1

Cite

IEEE M. A. Özçelik, İ. Karalı, and A. Kabul, “OVERVIEW OF SOLAR ENERGY CONVERSION IN TURKEY”, IJESG, vol. 4, no. 1, pp. 2–11, 2020, doi: 10.23884/IJESG.2019.4.1.01.

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