Influence of water based binary composite nanofluids on thermal performance of solar thermal technologies: sustainability assessments
نویسندگان
چکیده
Recent technological advances have made it possible to produce particles with nanometer dimensions that are uniformly and steadily suspended in traditional solar liquids enhanced the impact of thermo-physical parameters. In this research, a three-dimensional flat plate collector was built using thin single working fluid pipe. The physical model solved computationally under conditions conjugated laminar forced convection range 500 ≤ Re 1900 heat flux 1000 W/m2. Distilled water (DW) different types hybrid nanofluids (namely, 0.1%-Al2O3@Cu/DW, 0.1%-MWCNTs@Fe3O4/DW, 0.3%-MWCNTs@Fe3O4/DW, 0.5%-Ag@MgO/DW, 1%-Ag@MgO/DW, 1%-S1 1%-S2, where MWCNTs multi-wall carbon nanotubes, S1 means 2CuO–1Cu S2 1CuO–2Cu nanocomposites) were evaluated via set numerical results revealed that, by increasing velocity (the Reynolds number), average transfer coefficient, pressure loss, gain efficiency increased. Meanwhile, outlet temperature surface decreased. At = 1900, 1%-S2 presented higher thermal performance enhancement 44.28% 36.72% relative DW. Moreover, low 7.59% 7.44% reported 0.1%-Al2O3@Cu/DW respectively.
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ژورنال
عنوان ژورنال: Engineering Applications of Computational Fluid Mechanics
سال: 2023
ISSN: ['1997-003X', '1994-2060']
DOI: https://doi.org/10.1080/19942060.2022.2159881