کلیدواژهها
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Flat-plate solar collector, Analytical modeling, SiO2nanofluid, Thermal efficiency, ASHRAE standar
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چکیده
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The thermal performance of a flat-plate solar collector (FPSC) is investigated experimentally and analytically. The studied
nanofluid is SiO2/deionized water with volumetric concentration up to 0.6% and nanoparticles diameter of 20–30 nm. The
tests and also the modeling are performed based on ASHRAE standard and compared with each other to validate the
developed model. The dynamic model is based on the energy balance in a control volume. The system of derived equations
is solved by employing an implicit finite difference scheme. Moreover, the thermal conductivity and viscosity of SiO2
nanofluid have been investigated thoroughly. The measurement findings indicate that silica nanoparticles, despite their low
thermal conductivity, have a great potential for improving the thermal performance of FPSC. Analyzing the characteristic
parameters of solar collector efficiency reveals that the effect of nanoparticles on the performance improvement is more
pronounced at higher values of reduced temperature. The thermal efficiency, working fluid outlet temperature and also
absorber plate temperature of the modeling have been confirmed with experimental verification. A satisfactory agreement
has been achieved between the results. The maximum percentage of deviation for working fluid outlet temperature and
collector absorber plate temperature is 0.7% and 3.7%, respectively.
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