International audienceModeling and simulation of nanofluid flows is crucial for applications ranging from the cooling of electronic devices to solar water heating systems, particularly when compared to the high expense of experimental studies. Accurate simulation of a thermal-fluid system requires a deep understanding of the underlying physical phenomena occurring in the system. In the case of a complex nanofluid-based system, suitable simplifying approximations must be chosen to strike a balance between the nano-scale and macro-scale phenomena. Based on these choices, the computational approach – or set of approaches – to solve the mathematical model can be identified, implemented and validated. In Part I of this review (Mahian et al., 201...
The internal combustion engine has become one of the indispensable thermal power machineries in mode...
The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid w...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...
International audienceIt has been more than two decades since the discovery of nanofluids-mixtures o...
Exploiting nanofluids in thermal systems is growing day by day. Nanofluids having ultrafine solid pa...
Nanofluids have gained significant attention in recent years due their great potential for heat tran...
Evaluating the heat transfer enhancement due to the use of nanofluids has recently become the center...
Nanofluids have gained significant attention in recent years due their great potential for heat tran...
Numerical simulation of nanofluid flows is of maximum importance for a large area of applications, e...
The performance evaluation of the nanofluids through numerical methods is much more affordable compa...
Utilizing nanofluids to enhance heat transfer is shown to be a promising option with many practical ...
Since the industrial revolution, fossil fuel has been the main resource for generating power and ene...
This work compares heat loss characteristics across a riser pipe of a flat plate solar collector fil...
A numerical study of convective heat transfer in an annular pipe solar collector system ...
Introduction of suspended nanoparticles into a base liquid will remarkably enhance energy transport ...
The internal combustion engine has become one of the indispensable thermal power machineries in mode...
The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid w...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...
International audienceIt has been more than two decades since the discovery of nanofluids-mixtures o...
Exploiting nanofluids in thermal systems is growing day by day. Nanofluids having ultrafine solid pa...
Nanofluids have gained significant attention in recent years due their great potential for heat tran...
Evaluating the heat transfer enhancement due to the use of nanofluids has recently become the center...
Nanofluids have gained significant attention in recent years due their great potential for heat tran...
Numerical simulation of nanofluid flows is of maximum importance for a large area of applications, e...
The performance evaluation of the nanofluids through numerical methods is much more affordable compa...
Utilizing nanofluids to enhance heat transfer is shown to be a promising option with many practical ...
Since the industrial revolution, fossil fuel has been the main resource for generating power and ene...
This work compares heat loss characteristics across a riser pipe of a flat plate solar collector fil...
A numerical study of convective heat transfer in an annular pipe solar collector system ...
Introduction of suspended nanoparticles into a base liquid will remarkably enhance energy transport ...
The internal combustion engine has become one of the indispensable thermal power machineries in mode...
The main objective of our work is to light out the three-dimensional flow of an Ag-water nanofluid w...
Numerical investigations are conducted using finite volume method to study the laminar heat transfer...