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
  • International Journal of Thermodynamics
  • Volume:24 Issue:4
  • Thermophysical Properties of Nanoferrofluid (Fe3O4 –Acetone/Znbr2) as a Working Fluid for Use in Abs...

Thermophysical Properties of Nanoferrofluid (Fe3O4 –Acetone/Znbr2) as a Working Fluid for Use in Absorption Refrigeration Applications

Authors : Mohamad MEHYO, Hakan ÖZCAN
Pages : 103-109
Doi:10.5541/ijot.949012
View : 11 | Download : 9
Publication Date : 2021-12-01
Article Type : Research Paper
Abstract :In this paper, thermophysical analyses were achieved for the mixture of insert ignore into journalissuearticles values(Fe3O4-acetone/ZnBr2); refrigeration working solution and examine its efficiency characteristics as a nanoferrofluid for use in absorption refrigeration applications driven by different low temperatures sources. Where it shows an investigation of the chosen nanoferrofluid containing the preparation, stability, structure, and properties. The reasons behind choosing Fe3O4 nanoparticles are that acetone is a good dispersivity medium for this kind of nanoparticles, also, their excellent thermophysical properties and magnetic property which give an ability to utilize them combined with applying an external magnetic field as a method for long and acceptable suspension stability of these nanoparticles in the base fluid thus enhancement in the heat transfer process in the generator of Absorption Refrigeration System insert ignore into journalissuearticles values(ARS);. As a multi-factor experimental study, the experiments are designed to visually inspect the suspension nanoparticle`s stability in the base fluid. Then presenting the thermophysical analysis of different properties of the mixture insert ignore into journalissuearticles values(thermal conductivity, density, dynamic viscosity, and specific heat capacity);. The results elucidate that the studied nanoferrofluid has good dispersion and an enhancement in thermal conductivity that reaches 10.179 % at 0.2 insert ignore into journalissuearticles values(wt.%); of nanoparticle concentration. Also, by increasing nanoparticle concentration, the density increased, heat capacity decreased, as expected, and viscosity significantly increased.
Keywords : Acetone ZnBr2, Thermal conductivity, Nanoferrofluid, Thermophysical properties, Fe3O4, ARS

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