This study investigates the effect of using turbulators with innovative geometrie (TIG) and DWCNTs-TiO2/water hybrid nanofluid (HNF) on thermal–hydraulic performance, exergy and energy efficacies of flat plate solar collector (FPSC) using a mixed two-phase model (TPM). Finite volume technique (FVT), SIMLPLEC algorithm and FLUENT software are used. The numerical study is performed for nano-additives concentrations (ϕ) of 1 to 3%, Reynolds numbers (Re) from 7000 to 28000, and PR of 1, 2, 3, and 4 of the proposed TIG in turbulent flow regime. The results show that the average Nusselt number (Nuave) increases by augmenting the Re and ϕ. In addition, at Re = 28,000 and ϕ = 3%, the installation of TIG with PR = 4 within the solar collector (SC) i...
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...
The use of TiO2–water nanofluid as a working fluid for enhancing the performance of a flat plate sol...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
The present research benefits from the finite volume method in investigating the influence of combin...
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 research is mainly aimed at investigating the numerical modeling of thermal- hydrau...
This research is mainly aimed at investigating the numerical modeling of thermal- hydrau...
Abstract The use of solar energy is one of the most prominent strategies for addressing the present ...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
The use of TiO2 water nanofluid as a working fluid for enhancing the performance of a flat plate sol...
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...
The use of TiO2–water nanofluid as a working fluid for enhancing the performance of a flat plate sol...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
The present research benefits from the finite volume method in investigating the influence of combin...
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 research is mainly aimed at investigating the numerical modeling of thermal- hydrau...
This research is mainly aimed at investigating the numerical modeling of thermal- hydrau...
Abstract The use of solar energy is one of the most prominent strategies for addressing the present ...
Designing the most efficient parabolic trough solar collector (PTSC) is still a demanding and challe...
A numerical investigation is performed using finite volume method to study the laminar heat transfer...
The use of TiO2 water nanofluid as a working fluid for enhancing the performance of a flat plate sol...
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...
The use of TiO2–water nanofluid as a working fluid for enhancing the performance of a flat plate sol...