Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2019, Cilt: 24 Sayı: 2, 571 - 582, 30.08.2019
https://doi.org/10.17482/uumfd.585682

Öz

Destekleyen Kurum

TÜBİTAK

Proje Numarası

218M805

Teşekkür

Authors gratefully acknowledge the financial support provided by TUBITAK (Project no: 218M805).

Kaynakça

  • 1. Kaya, M.N., Aksoy, M.H. and Kose, F. (2017). Renewable energy in Turkey: potential,current status and future aspects, International Journal of Engineering, ISSN: 1584-2665, 65-69.
  • 2. Kok, B. and Benli, H. (2017). Energy diversity and nuclear energy for sustainable development in Turkey, Renewable Energy, 111, 870-877.
  • 3. Erdil, A. and Erbıyık, H. (2015) Renewable Energy Sources of Turkey and Assessment of Sustainability, Procedia - Social and Behavioral Sciences, 207, 669 – 679.
  • 4. J.L. Bernal-Agustin and R. Dufo-Lopez. (2009) Simulation and optimization of stand-alone hybrid renewable energy systems. Renewable and Sustainable Reviews, 13, 2111-2118.
  • 5. Acevedo, L., Uche, J., Del Almo, A. Cirez, F., Uson, S., Martinez, A., Guedea, I. (2016) Dynamic Simulation of a Trigeneration Scheme for Domestic Purposes Based on Hybrid Techniques, Energies, 9, 1013; doi:10.3390/en9121013.
  • 6. Bakic, V. Pezo, M., Stevanovic, Z., Zivkovic, M., Grubor, B. (2012) Dynamical simulation of PV/Wind hybrid energy conversion system, Energy, 45, 324-328.
  • 7. Panayiotou, G., Kalogirou, S. and Tassou, S. (2012) Design and simulation of a PV and a PV-Wind standalone energy system to power a household application, Renewable Energy, 37, 355-363.
  • 8. Huang, Q., Shi, Y., Wang, Y., Lu, L., Cui, Y. (2015) Multi-turbine wind-solar hybrid system. Renewable Energy, 76, 401-407.
  • 9. Ramli, M.A.M., Hiendro, A., Al-Turki, Y.A. (2016) Techno-economic energy analysis of wind/solar hybrid system: Case study for western coastal area of Saudi Arabia. Renewable Energy, 91, 374-385.
  • 10. Elnaggar, M., Edwan, E., Ritter, M. (2017) Wind Energy Potential of Gaza Using Small Wind Turbines: A Feasibility Study, Energies, 10, 1229; doi:10.3390/en10081229.
  • 11. Rohatgi J. and Vaughn N. (1974) Wind characteristics: an analysis for the generation of wind power. Alternative Energy Institute. West Texas A&M University.
  • 12. Tank, V. Bhutka, J., Harinarayana, T. (2016) Wind Energy Generation and Assessment of Resources in India, Journal of Power and Energy Engineering, 4, 25-38.
  • 13. Duffie, J.A. and Beckman W.A. (1991) Solar Engineering of Thermal Processes. Second Edition. New York: John Wiley & Sons, Inc.
  • 14. Al-Alili A., Islam, M.D., Kubo, I., Hwang, Y., Radermacher, R. (2012) Modeling of a solar powered absorption cycle for Abu Dhabi, Applied Energy. 160-167.

DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE

Yıl 2019, Cilt: 24 Sayı: 2, 571 - 582, 30.08.2019
https://doi.org/10.17482/uumfd.585682

Öz

In this study, a PV/Wind hybrid power generation
system was studied with using meteorological data of Bursa province. Two
specific years (2011, 2014) were chosen for the dynamic simulations. The designed
hybrid system consists of PV panels and a wind turbine. The outcome of the
study shows that with the proposed 1 MW PV + 2 MW wind turbine system, it is
possible to generate enough electricity to compensate the annual electricity
requirement of 450 households which can be considered as a small district area.
 Levelized cost of energy is found a
value between $ 0.413-0.568/kWh. PBP of the system is found a value around 20
years. It was concluded that it is essential to offer adequate incentives for
renewable-based power applications to make them economically beneficial.

Proje Numarası

218M805

Kaynakça

  • 1. Kaya, M.N., Aksoy, M.H. and Kose, F. (2017). Renewable energy in Turkey: potential,current status and future aspects, International Journal of Engineering, ISSN: 1584-2665, 65-69.
  • 2. Kok, B. and Benli, H. (2017). Energy diversity and nuclear energy for sustainable development in Turkey, Renewable Energy, 111, 870-877.
  • 3. Erdil, A. and Erbıyık, H. (2015) Renewable Energy Sources of Turkey and Assessment of Sustainability, Procedia - Social and Behavioral Sciences, 207, 669 – 679.
  • 4. J.L. Bernal-Agustin and R. Dufo-Lopez. (2009) Simulation and optimization of stand-alone hybrid renewable energy systems. Renewable and Sustainable Reviews, 13, 2111-2118.
  • 5. Acevedo, L., Uche, J., Del Almo, A. Cirez, F., Uson, S., Martinez, A., Guedea, I. (2016) Dynamic Simulation of a Trigeneration Scheme for Domestic Purposes Based on Hybrid Techniques, Energies, 9, 1013; doi:10.3390/en9121013.
  • 6. Bakic, V. Pezo, M., Stevanovic, Z., Zivkovic, M., Grubor, B. (2012) Dynamical simulation of PV/Wind hybrid energy conversion system, Energy, 45, 324-328.
  • 7. Panayiotou, G., Kalogirou, S. and Tassou, S. (2012) Design and simulation of a PV and a PV-Wind standalone energy system to power a household application, Renewable Energy, 37, 355-363.
  • 8. Huang, Q., Shi, Y., Wang, Y., Lu, L., Cui, Y. (2015) Multi-turbine wind-solar hybrid system. Renewable Energy, 76, 401-407.
  • 9. Ramli, M.A.M., Hiendro, A., Al-Turki, Y.A. (2016) Techno-economic energy analysis of wind/solar hybrid system: Case study for western coastal area of Saudi Arabia. Renewable Energy, 91, 374-385.
  • 10. Elnaggar, M., Edwan, E., Ritter, M. (2017) Wind Energy Potential of Gaza Using Small Wind Turbines: A Feasibility Study, Energies, 10, 1229; doi:10.3390/en10081229.
  • 11. Rohatgi J. and Vaughn N. (1974) Wind characteristics: an analysis for the generation of wind power. Alternative Energy Institute. West Texas A&M University.
  • 12. Tank, V. Bhutka, J., Harinarayana, T. (2016) Wind Energy Generation and Assessment of Resources in India, Journal of Power and Energy Engineering, 4, 25-38.
  • 13. Duffie, J.A. and Beckman W.A. (1991) Solar Engineering of Thermal Processes. Second Edition. New York: John Wiley & Sons, Inc.
  • 14. Al-Alili A., Islam, M.D., Kubo, I., Hwang, Y., Radermacher, R. (2012) Modeling of a solar powered absorption cycle for Abu Dhabi, Applied Energy. 160-167.
Toplam 14 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Araştırma Makaleleri
Yazarlar

Ayşe Fidan Altun

Muhsin Kılıç

Proje Numarası 218M805
Yayımlanma Tarihi 30 Ağustos 2019
Gönderilme Tarihi 2 Temmuz 2019
Kabul Tarihi 2 Ağustos 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 24 Sayı: 2

Kaynak Göster

APA Altun, A. F., & Kılıç, M. (2019). DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 24(2), 571-582. https://doi.org/10.17482/uumfd.585682
AMA Altun AF, Kılıç M. DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE. UUJFE. Ağustos 2019;24(2):571-582. doi:10.17482/uumfd.585682
Chicago Altun, Ayşe Fidan, ve Muhsin Kılıç. “DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 24, sy. 2 (Ağustos 2019): 571-82. https://doi.org/10.17482/uumfd.585682.
EndNote Altun AF, Kılıç M (01 Ağustos 2019) DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 24 2 571–582.
IEEE A. F. Altun ve M. Kılıç, “DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE”, UUJFE, c. 24, sy. 2, ss. 571–582, 2019, doi: 10.17482/uumfd.585682.
ISNAD Altun, Ayşe Fidan - Kılıç, Muhsin. “DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi 24/2 (Ağustos 2019), 571-582. https://doi.org/10.17482/uumfd.585682.
JAMA Altun AF, Kılıç M. DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE. UUJFE. 2019;24:571–582.
MLA Altun, Ayşe Fidan ve Muhsin Kılıç. “DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE”. Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, c. 24, sy. 2, 2019, ss. 571-82, doi:10.17482/uumfd.585682.
Vancouver Altun AF, Kılıç M. DYNAMIC SIMULATION OF A PV/WIND HYBRID POWER GENERATION SYSTEM: CASE STUDY OF BURSA PROVINCE. UUJFE. 2019;24(2):571-82.

DUYURU:

30.03.2021- Nisan 2021 (26/1) sayımızdan itibaren TR-Dizin yeni kuralları gereği, dergimizde basılacak makalelerde, ilk gönderim aşamasında Telif Hakkı Formu yanısıra, Çıkar Çatışması Bildirim Formu ve Yazar Katkısı Bildirim Formu da tüm yazarlarca imzalanarak gönderilmelidir. Yayınlanacak makalelerde de makale metni içinde "Çıkar Çatışması" ve "Yazar Katkısı" bölümleri yer alacaktır. İlk gönderim aşamasında doldurulması gereken yeni formlara "Yazım Kuralları" ve "Makale Gönderim Süreci" sayfalarımızdan ulaşılabilir. (Değerlendirme süreci bu tarihten önce tamamlanıp basımı bekleyen makalelerin yanısıra değerlendirme süreci devam eden makaleler için, yazarlar tarafından ilgili formlar doldurularak sisteme yüklenmelidir).  Makale şablonları da, bu değişiklik doğrultusunda güncellenmiştir. Tüm yazarlarımıza önemle duyurulur.

Bursa Uludağ Üniversitesi, Mühendislik Fakültesi Dekanlığı, Görükle Kampüsü, Nilüfer, 16059 Bursa. Tel: (224) 294 1907, Faks: (224) 294 1903, e-posta: mmfd@uludag.edu.tr