AbstractThe present study represents the heat transfer optimization of two-dimensional incompressible laminar flow of Al2O3-water nanofluids in a duct with uniform temperature corrugated walls. A two phase model is applied to investigate different governing parameters, namely: Reynolds number (100 ≤ Re ≤ 1000), nonofluids volume fraction (0% ≤ ϕ ≤ 5%) and amplitude of the wavy wall (0 ≤ α ≤ 0.04 m). For optimization process, a recent spot-lighted method, called Artificial Bee Colony (ABC) algorithm, is applied, and the results are shown to be in a good accuracy in comparison with another well-known heuristic method, i.e. particle swarm optimization (PSO). The results indicate that the effect of utilizing nanoparticles and increasing Reynold...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
AbstractIn this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced co...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
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...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
AbstractIn this paper, laminar forced convection flow of Al2O3–water nanofluid in sinusoidal-wavy ch...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
ASME International Mechanical Engineering Congress and Exposition (IMECE2013) -- NOV 15-21, 2013 -- ...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
WOS: 000347500800003In this study, the heat transfer characteristics of Al2O3-water based nanofluids...
Development of modern heat exchangers or solar collectors is related to the analysis of working flui...
AbstractIn this article, a numerical study of laminar forced convective heat transfer in a circular ...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
AbstractIn this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced co...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
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...
In this work, we perform an extensive numerical investigation of the heat transfer behavior of nanof...
AbstractIn this paper, laminar forced convection flow of Al2O3–water nanofluid in sinusoidal-wavy ch...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
ASME International Mechanical Engineering Congress and Exposition (IMECE2013) -- NOV 15-21, 2013 -- ...
AbstractIn this paper, turbulent forced convection of nanofluids flow in triangular-corrugated chann...
WOS: 000347500800003In this study, the heat transfer characteristics of Al2O3-water based nanofluids...
Development of modern heat exchangers or solar collectors is related to the analysis of working flui...
AbstractIn this article, a numerical study of laminar forced convective heat transfer in a circular ...
AbstractThe heat transfer and flow characteristics in corrugated with V-shape lower plate using nano...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...
AbstractIn this study, the flow field and heat transfer of Al2O3–water nanofluid turbulent forced co...
WOS: 000460088000017In this paper; heat transfer and pressure drop characteristics of CuO-water nano...