Development of modern heat exchangers or solar collectors is related to the analysis of working fluid flow and heat transfer within different channels. The energy transport enhancement can be reached by including nanofluids as working media and irregular channels to intensify the heat removal. The present research is devoted to computational analysis of nanosuspension forced convection in a horizontal wavy channel under the impact of heating from the upper wavy surface. The single-phase nanofluid approach with experimentally-based correlations for viscosity and thermal conductivity holds implemented for an investigation in combination with Newton's second law for the description of the motion of the nanoparticle within the channel. The form...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
87-98Heat transfer in mixed convection unsteady MHD flow of an incompressible nanofluid in a channel...
Convective heat transfer rate for turbulent flow using nanofluid through both plain and corrugated c...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Nanofluids are stable suspensions of nanoparticles in conventional heat transfer fluids (base fluids...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
A numerical investigation was conducted to study the forced and mixed convection of nanofluid in a h...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
The study of the forced convection in a channel has many practical applications. In this paper, the ...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
87-98Heat transfer in mixed convection unsteady MHD flow of an incompressible nanofluid in a channel...
Convective heat transfer rate for turbulent flow using nanofluid through both plain and corrugated c...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Nanofluids are stable suspensions of nanoparticles in conventional heat transfer fluids (base fluids...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
A numerical investigation was conducted to study the forced and mixed convection of nanofluid in a h...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
The study of the forced convection in a channel has many practical applications. In this paper, the ...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
87-98Heat transfer in mixed convection unsteady MHD flow of an incompressible nanofluid in a channel...
Convective heat transfer rate for turbulent flow using nanofluid through both plain and corrugated c...