In this paper, the entropy generation (EGen) and exergy of a solar collector (SC) with alumina/ ethylene glycol-water (50:50) nanofluid (NFs) flow are calculated. The tubes and the absorber plate of the collector are made of copper and steel, and the results of both materials are compared. Tubes with hexagonal cross section are considered. Nanoparticles (NPs) with four different shapes of platelet, brick, blade, and cylinder are considered, and their effect is evaluated. Volume fraction (ϕ) changes in the range of 0–4%, and mass flow rate varies from 0.25 to 1 kg/s. These parameters as well as the material of collector tubes and the shape of NPs are the variables of this study and their effect on fluid frictional entropy generation (...
The efficiency of energy and exergy is generally used as the most important parameter in order to in...
Recently, nanofluid application as a heat transfer fluid for a closed-loop solar heat collector is r...
Abstract The use of solar energy is one of the most prominent strategies for addressing the present ...
Energy and exergy (EnE) efficiencies are considered the most important parameters to compare the per...
Energy and exergy (EnE) efficiencies are considered the most important parameters to compare the per...
This paper theoretically analyzes entropy generation, heat transfer enhancement capabilities and pre...
This research presents an innovative alteration to the solar collector's design by integrating a 4-l...
Application of nanofluid to increase the thermal efficiency of a traditional solar collector is gett...
Abstract This study compared the impacts of using copper nanofliud to enhance the efficiency of flat...
The thermal efficiency of a flat plate solar thermal collector is largely affected by the thermal co...
The present work numerically investigates the heat transfer performance and entropy generation of fo...
Since the industrial revolution, fossil fuel has been the main resource for generating power and ene...
This paper theoretically analyses entropy generation, heat transfer enhancement capabilities and pre...
Heat transfer phenomena of flat plate solar collector filled with different nanofluids has been inve...
An experimental and theoretical energy and exergy analysis was conducted for a cylindrical cavity re...
The efficiency of energy and exergy is generally used as the most important parameter in order to in...
Recently, nanofluid application as a heat transfer fluid for a closed-loop solar heat collector is r...
Abstract The use of solar energy is one of the most prominent strategies for addressing the present ...
Energy and exergy (EnE) efficiencies are considered the most important parameters to compare the per...
Energy and exergy (EnE) efficiencies are considered the most important parameters to compare the per...
This paper theoretically analyzes entropy generation, heat transfer enhancement capabilities and pre...
This research presents an innovative alteration to the solar collector's design by integrating a 4-l...
Application of nanofluid to increase the thermal efficiency of a traditional solar collector is gett...
Abstract This study compared the impacts of using copper nanofliud to enhance the efficiency of flat...
The thermal efficiency of a flat plate solar thermal collector is largely affected by the thermal co...
The present work numerically investigates the heat transfer performance and entropy generation of fo...
Since the industrial revolution, fossil fuel has been the main resource for generating power and ene...
This paper theoretically analyses entropy generation, heat transfer enhancement capabilities and pre...
Heat transfer phenomena of flat plate solar collector filled with different nanofluids has been inve...
An experimental and theoretical energy and exergy analysis was conducted for a cylindrical cavity re...
The efficiency of energy and exergy is generally used as the most important parameter in order to in...
Recently, nanofluid application as a heat transfer fluid for a closed-loop solar heat collector is r...
Abstract The use of solar energy is one of the most prominent strategies for addressing the present ...