International audienceIn this study, the Lattice Boltzmann Method (LBM) is employed in order to examine the fluid flow and forced convection heat transfer inside a two-dimensional horizontal channel with and without obstacles. In order to enhance the heat and thermal energy transfer within the channel, different obstacle arrangements are posed to the flow field and heat transfer with the purpose of studying their sensitivity to these changes. The results indicate that, when the value of the Reynolds number is maximum, the maximum average Nusselt numbers happens on the lower wall (Case 4). The paper extends the topic to the use of nanofluids to introduce a possibility to enhancement of the heat transfer in the channel with an array of the ob...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. ...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
Lattice Boltzmann method (LBM) was carried out to investigate the effects of magnetic field and nano...
In this study, the Lattice Boltzmann Method (LBM) is employed in order to examine the fluid flow ...
In the present study, heat transfer by two-dimensional incompressible nanofluids around four sinusoi...
In the present study, heat transfer by two-dimensional incompressible nanofluids around four sinusoi...
The study of the forced convection in a channel has many practical applications. In this paper, the ...
The present investigation is set to evaluate the nanofluid thermogravitational convection within a Γ...
Research on nanofluids for heat transfer augmentation has received a great attention from many resea...
Abstract In the present paper, nanofluid mixed convection is investigated in a square cavity with an...
A thermal lattice Boltzmann model for investigating the flow and heat transfer process of the mixtur...
In the present work, for the first time, laminar natural convection of water-TiO2 nanofluid around a...
Utilizing nanofluids to enhance heat transfer is shown to be a promising option with many practical ...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. F...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. F...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. ...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
Lattice Boltzmann method (LBM) was carried out to investigate the effects of magnetic field and nano...
In this study, the Lattice Boltzmann Method (LBM) is employed in order to examine the fluid flow ...
In the present study, heat transfer by two-dimensional incompressible nanofluids around four sinusoi...
In the present study, heat transfer by two-dimensional incompressible nanofluids around four sinusoi...
The study of the forced convection in a channel has many practical applications. In this paper, the ...
The present investigation is set to evaluate the nanofluid thermogravitational convection within a Γ...
Research on nanofluids for heat transfer augmentation has received a great attention from many resea...
Abstract In the present paper, nanofluid mixed convection is investigated in a square cavity with an...
A thermal lattice Boltzmann model for investigating the flow and heat transfer process of the mixtur...
In the present work, for the first time, laminar natural convection of water-TiO2 nanofluid around a...
Utilizing nanofluids to enhance heat transfer is shown to be a promising option with many practical ...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. F...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. F...
Purpose The study aims to study the nanofluid flow and heat transfer in a T-shaped heat exchanger. ...
This research investigates the laminar steady-forced convection heat transfer of a Cu-water nanoflui...
Lattice Boltzmann method (LBM) was carried out to investigate the effects of magnetic field and nano...