Experiments have been performed to investigate the radiation effects on mixed convection heat transfer for thermally developing airflow in vertical ducts with two differentially heated isothermal walls and two adiabatic walls. The investigation covers the Reynolds number of Re = 800 to Re = 2900, heat flux varied from 256 W/m2 to 863 W/m2, hot wall temperature ranges from 27°C to 100 °C, aspect ratios 1 & 0.5 and the emissivity of internal walls are 0.05 and 0.85. In the present study, combined flow visualization was conducted to observe the flow patterns. The effect of surface temperature along the walls was studied to investigate the local Nusselt number variation within the duct. The result shows that flow condition and radiation s...
Heat and mass transfer in vertical channels with a heated ribbed wall is investigated numerically an...
Nowadays trends in natural convection heat transfer are oriented toward either the seeking of new co...
The attached document may provide the author's accepted version of a published work. See Citati...
Experiments have been performed to investigate the radiation effects on mixed convection heat transf...
A numerical analysis of heat transfer in a heated horizontal duct is carried out to study the effect...
In this research, experiments are performed to study the laminar flow mixed-convection heat transfer...
Combined effect of laminar flow mixed convection and surface radiation heat transfer for thermally d...
Mixed convection heat transfer in horizontal and vertical ducts with flow through the duct plays an ...
The effect of radiation on the steady mixed convection flow in a vertical channel is investigated fo...
This study analysed mixed convection heat transfer for thermally developing flow in a side heated sq...
Measurements and predictions of mixed convection air flow in a vertical two-dimensional duct that is...
The effect of partial heating/cooling of the wall on the mixed convection with thermal radiation in ...
Fluids engineering is extremely important in a wide variety of materials processing systems, such as...
In the present paper the influence of radiation heat transfer in mixed convection buoyant turbulent ...
This paper presents a numerical investigation on airflow through a heated horizontal rectangular duc...
Heat and mass transfer in vertical channels with a heated ribbed wall is investigated numerically an...
Nowadays trends in natural convection heat transfer are oriented toward either the seeking of new co...
The attached document may provide the author's accepted version of a published work. See Citati...
Experiments have been performed to investigate the radiation effects on mixed convection heat transf...
A numerical analysis of heat transfer in a heated horizontal duct is carried out to study the effect...
In this research, experiments are performed to study the laminar flow mixed-convection heat transfer...
Combined effect of laminar flow mixed convection and surface radiation heat transfer for thermally d...
Mixed convection heat transfer in horizontal and vertical ducts with flow through the duct plays an ...
The effect of radiation on the steady mixed convection flow in a vertical channel is investigated fo...
This study analysed mixed convection heat transfer for thermally developing flow in a side heated sq...
Measurements and predictions of mixed convection air flow in a vertical two-dimensional duct that is...
The effect of partial heating/cooling of the wall on the mixed convection with thermal radiation in ...
Fluids engineering is extremely important in a wide variety of materials processing systems, such as...
In the present paper the influence of radiation heat transfer in mixed convection buoyant turbulent ...
This paper presents a numerical investigation on airflow through a heated horizontal rectangular duc...
Heat and mass transfer in vertical channels with a heated ribbed wall is investigated numerically an...
Nowadays trends in natural convection heat transfer are oriented toward either the seeking of new co...
The attached document may provide the author's accepted version of a published work. See Citati...