Study of Thermal and Hydrodynamic Performance of a Parabolic Trough Solar Collector Using Hybrid MWCNT/Fe3O4- Therminol VP-1 Nanofluid
In the present study, the performance of a parabolic trough solar collector using a hybrid nanofluid and its comparison with a mono nanofluid and a base fluid were theoretically investigated based on a thermal model. Therminol VP-1 was selected as the base fluid and Fe3O4 and Nanocomposite Multi-walled carbon nanotubes- Fe3O4 were selected as the nanoparticles. The fluid flow inside the absorber tube of the collector is assumed to be turbulent. The rsults showed that the energy and exergy efficiencies using hybrid and mono nanofluids were higher than the base fluid. However, their amount using of hybrid nanofluid was slightly less than that of mono nanofluid. The highest enhancement in energy efficiency for hybrid and mono nanofluids compared with the base fluid was equal to 2.17% and 2.22% respectively. Also, the highest enhancement in exergy efficiency was 1.49% and 1.58% respectively. On the other hand, the friction factor of mono nanofluid in average was about 7% higher than that of hybrid nanofluid. The results showed that the thermal-hydrodynamic efficiency (performance evaluation criterion) of the collector (performance evaluation criterion) using hybrid nanofluid was higher than that of mono nanofluid.
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Comparison of hydrodynamic, energy and exergy efficiency of two-phase hybrid nanofluid in parabolic trough solar collector with vortex generator and turbulator
Ali Golzar, *, Hamid Mohsenimonfared, Ali Hassani Joshaghani
Journal of Transport Phenomena in Nano and Micro Scales, Summer-Autumn 2022 -
Investigation of Hydraulic-Thermal Performance, Energy, and Exergy Efficiency in Parabolic Solar Collector Equipped with Vortex Generator Containing Two-phase Hybrid Nanofluid
Mohammad Sepehrirad, *, Mohammadmahdi Najafizadeh, Ali Hassani Joshaghani
Journal of Energy Engineering & Management, -
Investigating Quantitative Status of Groundwater Resources in Kashan Plain, Perspective and Providing Appropriate Solutions
, Hoda Ghasemieh *, Mahdi Soleimani Motlagh, Mohammad Mirzavand
Water Engineering, -
Investigation of energy and exergy performance of parabolic trough solar collector with wind speed variations
Farhad Vahidinia, *,
Journal of Aeronautical Engineering,