Araştırma Makalesi

Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid

Cilt: 12 Sayı: 1 27 Mart 2023
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Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid

Abstract

The inclusion of solar energy, which is a renewable energy source, in heating systems in buildings provides significant advantages. To make heating with solar energy sufficient and efficient, nanofluids are used in solar collectors. In this study, a hybrid heating prototype is produced, a control mechanism controlling the operation of the hybrid system is established and tests are carried out by including monoethylene glycol, propylene glycol, aluminum oxide, copper oxide, titanium dioxide, especially triethylene glycol-based nanofluids in the system. Finally, a new nanofluid is obtained by mixing triethylene glycol with aluminum oxide and is tested on the prototype. With the tests carried out under the same conditions, the temperature differences of the nanofluids in a certain time period are observed and recorded. It is observed that the mixture of water and triethylene glycol provided the lowest temperature increase by providing a temperature increase of 8.6 °C in the range of 0-90 minutes. It also is observed that the highest temperature increase is achieved with the 21 °C temperature increase of the pure water and aluminum oxide mixture. Although the water and triethylene glycol mixture performs more inefficiently than other mixtures, it is thought that it can be used for heat storage since it heats up for a long time and cools down for a long time.

Keywords

Destekleyen Kurum

TUBITAK

Proje Numarası

1919B012006220

Teşekkür

The authors would like to thank Mr. Ercument BOSTANCI for contributing to the realization of this study and TUBITAK for its support within the scope of 2209-A University Students Research Projects Support Program (Project No: 1919B012006220).

Kaynakça

  1. Kilic FC. Solar energy, its recent status in turkey and production Technologies. Engineering and Machine. 2015;52(617):94-106.
  2. General Directorate of Meteorology. Effects of Global Warming and Climate Change [Internet]. 2021 [cited 2021 Oct 15]. Available from: https://www.mgm.gov.tr/genel/meteorolojiyegir.aspx?s=19
  3. Gencoglu MT. Importance of renewable energy resources for Turkey. Firat University Journal of Science and Engineering. 2002;14(2):57-64.
  4. Saglam S. Türkiye’nin güneş enerjisi potansiyelinin ve kullanım alanlarının incelenmesi. [M.S. thesis]. Istanbul: Graduate School of Science and Engineering, Marmara University; 2000.
  5. General Directorate of Renewable Energy. Solar Potential Atlas [Internet]. 2021 [cited 2021 Oct 17]. Available from: http://www.gepa.enerji.gov.tr/MyCalculator/
  6. Seydiogullari HS. Renewable energy for sustainable development. Planning Journal. 2013;23(1):19-25.
  7. Ertekin C, Evrendilek F, Kulcu R. Modeling spatio-temporal dynamics of optimum tilt angles for solar collectors in Turkey. Sensors. 2008;8(5): 2913-2931.
  8. Gundogdu K, Kabadayi HS, Ozturk A. Photovoltaic solar panels for you follow a simple and economic system design. Düzce University Journal of Science & Technology. 2016;4(2):634-639.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

27 Mart 2023

Gönderilme Tarihi

7 Ekim 2022

Kabul Tarihi

20 Şubat 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 12 Sayı: 1

Kaynak Göster

APA
Babalıoğlu, M., Büyükpatpat, H., & Genç, A. (2023). Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid. Türk Doğa ve Fen Dergisi, 12(1), 68-75. https://doi.org/10.46810/tdfd.1184478
AMA
1.Babalıoğlu M, Büyükpatpat H, Genç A. Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid. TDFD. 2023;12(1):68-75. doi:10.46810/tdfd.1184478
Chicago
Babalıoğlu, Muhammed, Hakan Büyükpatpat, ve Abdullah Genç. 2023. “Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid”. Türk Doğa ve Fen Dergisi 12 (1): 68-75. https://doi.org/10.46810/tdfd.1184478.
EndNote
Babalıoğlu M, Büyükpatpat H, Genç A (01 Mart 2023) Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid. Türk Doğa ve Fen Dergisi 12 1 68–75.
IEEE
[1]M. Babalıoğlu, H. Büyükpatpat, ve A. Genç, “Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid”, TDFD, c. 12, sy 1, ss. 68–75, Mar. 2023, doi: 10.46810/tdfd.1184478.
ISNAD
Babalıoğlu, Muhammed - Büyükpatpat, Hakan - Genç, Abdullah. “Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid”. Türk Doğa ve Fen Dergisi 12/1 (01 Mart 2023): 68-75. https://doi.org/10.46810/tdfd.1184478.
JAMA
1.Babalıoğlu M, Büyükpatpat H, Genç A. Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid. TDFD. 2023;12:68–75.
MLA
Babalıoğlu, Muhammed, vd. “Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid”. Türk Doğa ve Fen Dergisi, c. 12, sy 1, Mart 2023, ss. 68-75, doi:10.46810/tdfd.1184478.
Vancouver
1.Muhammed Babalıoğlu, Hakan Büyükpatpat, Abdullah Genç. Prototype Design of Solar Collector Hybrid Heating System and Testing of Triethylene Glycol Nanofluid. TDFD. 01 Mart 2023;12(1):68-75. doi:10.46810/tdfd.1184478