Araştırma Makalesi

Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER

Cilt: 14 Sayı: 1 26 Mart 2025
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Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER

Öz

This study focuses on the design and techno-economic analysis of a Hybrid Energy System (HES) aimed at reducing carbon emissions for Dicle University in Diyarbakır, Turkey. The system integrates photovoltaic panels (PV), wind turbines (WT), battery storage systems (BSS), electrolyzers, and hydrogen storage tanks (HST) to create a sustainable and efficient energy solution. Diyarbakır’s high solar radiation and wind potential make it a suitable location for such an implementation. HOMER Pro software was utilized to model and optimize the system based on local meteorological data, evaluating the technical and economic performance. The designed HRES meets a daily energy demand of 34.3 kWh and is composed of an 8 kW PV array, a 5 kW WT, an 18 kWh BSS, a 7 kW electrolyzer, and a 400 kg hydrogen storage capacity. The system has a total capital cost of $287,577, a Net Present Cost (NPC) of $588,188, and a Levelized Cost of Energy (LCOE) of $11.09/kWh. The results demonstrate the feasibility and efficiency of integrating renewable energy with hydrogen storage to achieve energy reliability, sustainability, and reduced carbon emissions.

Anahtar Kelimeler

Etik Beyan

Çalışmamız için Etik Kurul Belgesine İhtiyaç Yoktur

Kaynakça

  1. Doğan, S., Haydaroğlu, C., Gümüş, B., & Mohammadzadeh, A. (2024, November). Innovative fuzzy logic type 3 controller for transient and maximum power point tracking in hydrogen fuel cells. International Journal of Hydrogen Energy, (August).
  2. Aydın, F., & Öztürk, D. (2024, August). Design and techno-economic analysis of hybrid power systems for rural areas: A case study of Bingöl. Electricity, 5(3), 562–584.
  3. Iqbal, R., Liu, Y., Zeng, Y., Zhang, Q., & Zeeshan, M. (2024). Comparative study based on techno-economics analysis of different shipboard microgrid systems comprising PV/wind/fuel cell/battery/diesel generator with two battery technologies: A step toward green maritime transportation. Renewable Energy, 221(July), 119670.
  4. Haydaroğlu, C., Kılıç, H., & Gümüş, B. (2024, September). Performance analysis and comparison of performance ratio of solar power plant. Turkish Journal of Electrical Power and Energy Systems.
  5. Purlu, M., & Ozkan, U. (2023, February). Economic and environmental analysis of grid-connected rooftop photovoltaic system using HOMER. Turkish Journal of Electrical Power and Energy Systems, 3(1), 39–46.
  6. Haydaroğlu, C., Yıldırım, B., Kılıç, H., & Özdemir, M. T. (2024, November). The effect of local and interarea oscillations of wind turbine generators based on permanent magnet synchronous generators connected to a power system. Turkish Journal of Electrical Power and Energy Systems.
  7. Köprü, M. A., Öztürk, D., & Yıldırım, B. (2024, August). Farklı rüzgâr hızı ve güneş radyasyon oranına sahip bölgeler için mikro şebeke tasarımı ve karşılaştırmalı analizi. DÜMF Mühendislik Dergisi, 3, 607–613.
  8. Kilic, H. (2024). Improving the performance of microgrid-based Power-to-X systems through optimization of renewable hydrogen generation. International Journal of Hydrogen Energy, (November 2023).

Ayrıntılar

Birincil Dil

İngilizce

Konular

Elektrik Enerjisi Depolama, Elektrik Enerjisi Üretimi (Yenilenebilir Kaynaklar Dahil, Fotovoltaikler Hariç), Elektrik Tesisleri

Bölüm

Araştırma Makalesi

Erken Görünüm Tarihi

26 Mart 2025

Yayımlanma Tarihi

26 Mart 2025

Gönderilme Tarihi

11 Aralık 2024

Kabul Tarihi

12 Şubat 2025

Yayımlandığı Sayı

Yıl 2025 Cilt: 14 Sayı: 1

Kaynak Göster

APA
Barlaz, F., Akıl, Y., Haydaroglu, C., & Kılıç, H. (2025). Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER. Turkish Journal of Nature and Science, 14(1), 136-145. https://doi.org/10.46810/tdfd.1599440
AMA
1.Barlaz F, Akıl Y, Haydaroglu C, Kılıç H. Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER. TDFD. 2025;14(1):136-145. doi:10.46810/tdfd.1599440
Chicago
Barlaz, Faruk, Yahya Akıl, Cem Haydaroglu, ve Heybet Kılıç. 2025. “Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER”. Turkish Journal of Nature and Science 14 (1): 136-45. https://doi.org/10.46810/tdfd.1599440.
EndNote
Barlaz F, Akıl Y, Haydaroglu C, Kılıç H (01 Mart 2025) Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER. Turkish Journal of Nature and Science 14 1 136–145.
IEEE
[1]F. Barlaz, Y. Akıl, C. Haydaroglu, ve H. Kılıç, “Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER”, TDFD, c. 14, sy 1, ss. 136–145, Mar. 2025, doi: 10.46810/tdfd.1599440.
ISNAD
Barlaz, Faruk - Akıl, Yahya - Haydaroglu, Cem - Kılıç, Heybet. “Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER”. Turkish Journal of Nature and Science 14/1 (01 Mart 2025): 136-145. https://doi.org/10.46810/tdfd.1599440.
JAMA
1.Barlaz F, Akıl Y, Haydaroglu C, Kılıç H. Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER. TDFD. 2025;14:136–145.
MLA
Barlaz, Faruk, vd. “Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER”. Turkish Journal of Nature and Science, c. 14, sy 1, Mart 2025, ss. 136-45, doi:10.46810/tdfd.1599440.
Vancouver
1.Faruk Barlaz, Yahya Akıl, Cem Haydaroglu, Heybet Kılıç. Renewable Energy and Hydrogen Storage System Analysis for Carbon Neutral Campuses with HOMER. TDFD. 01 Mart 2025;14(1):136-45. doi:10.46810/tdfd.1599440

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