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{"references": ["Mansourian, R., Mousavi, S. M., Mohammadpoor, M., & Sabbaghi, S. (2021). Evaluation of heat transfer augmentation and pressure drop by water/ethylene glycol nanofluid. International Journal of Refrigeration, 131, 459-472.", "Ansarpour, M., Danesh, E., & Mofarahi, M. (2020). Investigation the effect of various factors in a convective heat transfer performance by ionic liquid, ethylene glycol, and water as the base fluids for Al2O3 nanofluid in a horizontal tube: A numerical study. International Communications in Heat and Mass Transfer, 113, 104556.", "Davis, D., Mackolil, J., Mahanthesh, B., & Devi, K. S. (2022). Theoretical and experimental validation of thermal and heat transfer performance of novel ethylene glycol-Cr2AlC nanofluids. International Communications in Heat and Mass Transfer, 133, 105972.", "Azmi, W. H., Hamid, K. A., Mamat, R., Sharma, K. V., & Mohamad, M. S. (2016). Effects of working temperature on thermo-physical properties and forced convection heat transfer of TiO2 nanofluids in water\u2013Ethylene glycol mixture. Applied Thermal Engineering, 106, 1190-1199.", "Zahan, I., Nasrin, R., & Khatun, S. (2022). Thermal performance of ternary-hybrid nanofluids through a convergent-divergent nozzle using distilled water-ethylene glycol mixtures. International Communications in Heat and Mass Transfer, 137, 106254.", "Jamei, M., Pourrajab, R., Ahmadianfar, I., & Noghrehabadi, A. (2020). Accurate prediction of thermal conductivity of ethylene glycol-based hybrid nanofluids using artificial intelligence techniques. International Communications in Heat and Mass Transfer, 116, 104624."]}
This experimental work indicates the analysis conducted to investigate the performance, Rate of heat transfer using pure water and ethylene glycol. The Al2O3 (Aluminium Oxide), Tio2 (Titanium dioxide) Nano-sized solid particles also will be introduced in the next stage of experimental analysis into a constant temperature-surfaced hollow tube condenser. First, Analysis done by the water and baseline data is generated. Later in the second stage Ethylene glycol is replaced with water, and in the third stage Ethylene glycol and nanoparticles mixture are used finally, the comparison with first stage results of water has done on the ANSYS software.
Ethylene glycol, nanoparticles, ansys
Ethylene glycol, nanoparticles, ansys
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