IAD Index of Academic Documents
  • Home Page
  • About
    • About Izmir Academy Association
    • About IAD Index
    • IAD Team
    • IAD Logos and Links
    • Policies
    • Contact
  • Submit A Journal
  • Submit A Conference
  • Submit Paper/Book
    • Submit a Preprint
    • Submit a Book
  • Contact
  • Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji
  • Volume:9 Issue:2
  • Investigation of the Effect of Using Fe + Pure Water Nano Fluid on Thermal Performance in a Two Phas...

Investigation of the Effect of Using Fe + Pure Water Nano Fluid on Thermal Performance in a Two Phase Closed Thermosiphon

Authors : Kerim MARTİN
Pages : 357-372
Doi:10.29109/gujsc.933147
View : 23 | Download : 16
Publication Date : 2021-06-27
Article Type : Research Paper
Abstract :Heat is a type of energy that is used in many applications and can be easily converted into other types of energy. In this study, a performance analysis was carried out by using Fe + Pure water nano fluid in place of pure water in a two phase closed thermosiphon, which has a wide place in practice due to its simple structure. In the study, a copper thermosiphon with a length of 1 m, diameter of 14 mm and wall thickness of 1 mm was used. Experiments were performed with both pure water and nano fluid to be make a comparison. To observe the performance of system in different operating conditions, the experiments were carried out at 3 different heating power (150, 300, 450 W) and 3 different coolant flow rates (3, 6, 9 g/s). In all experimental conditions, Fe + Pure water nanofluid had better results than pure water. The highest efficiency value was found to be 77.9% in the experiment using Fe + Pure water nano fluid, performed at 150 W power and 9 g/s water flow rate. When pure water was used in this experiment, the efficiency value was obtained as 67.7% and the improvement rate was 15%. The highest improvement rate was obtained as 50.3% in the experiment conducted at 450 W heating power and 3 g/s coolant flow rate. The use of nano fluid has also reduced the thermal resistance of the thermosiphon. The highest rate of decrease in thermal resistances was obtained as 56.7% in the experiment performed at 150 W heating power and 3 g/s coolant flow rate.
Keywords : Heat Pipe, Nano Fluid, Thermal Performance, Waste Heat

ORIGINAL ARTICLE URL
VIEW PAPER (PDF)

* There may have been changes in the journal, article,conference, book, preprint etc. informations. Therefore, it would be appropriate to follow the information on the official page of the source. The information here is shared for informational purposes. IAD is not responsible for incorrect or missing information.


Index of Academic Documents
İzmir Academy Association
CopyRight © 2023-2025