The evaluations of the performance of solar flat-plate collectors are reported in the literature. A computer program developed by MATLAB has been applied for modelling the performance of a solar collector under steady state laminar conditions. Results demonstrate that Cu-water nanofluid would be capable of boosting the thermal efficiency of the collector by 2.4% at 4% volume concentration in the case of using Cunanofluid instead of just water as the working fluid. It is noteworthy that, dispersing the nanoparticles into the water results in a higher pressure drop and, therefore, a higher power consumption for pumping the nanofluid within the collector. It has been estimated for the collector understudy, that the increase in the pressure dro...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...
This work compares heat loss characteristics across a riser pipe of a flat plate solar collector fil...
The paper analyzes laminar forced convection heat transfer for both single and mixture phase models ...
The evaluations of the performance of solar flat-plate collectors are reported in the literature. A ...
Abstract This study compared the impacts of using copper nanofliud to enhance the efficiency of flat...
This study compared the impacts of using copper nanofliud to enhance the efficiency of flat solar co...
The efficiency of a flat plate solar collector using water based CuO nanofluid as a working fluid is...
This study compared the impacts of using copper nanofliud to enhance the efficiency of flat solar co...
Flat plate solar collectors (FPSCs) have gotten a lot of attention in the last decade because of the...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
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...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...
This work compares heat loss characteristics across a riser pipe of a flat plate solar collector fil...
The paper analyzes laminar forced convection heat transfer for both single and mixture phase models ...
The evaluations of the performance of solar flat-plate collectors are reported in the literature. A ...
Abstract This study compared the impacts of using copper nanofliud to enhance the efficiency of flat...
This study compared the impacts of using copper nanofliud to enhance the efficiency of flat solar co...
The efficiency of a flat plate solar collector using water based CuO nanofluid as a working fluid is...
This study compared the impacts of using copper nanofliud to enhance the efficiency of flat solar co...
Flat plate solar collectors (FPSCs) have gotten a lot of attention in the last decade because of the...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
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...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...
This work compares heat loss characteristics across a riser pipe of a flat plate solar collector fil...
The paper analyzes laminar forced convection heat transfer for both single and mixture phase models ...