The flow instability of nanofluids in a jet is studied numerically under various shape factors of the velocity profile, Reynolds numbers, nanoparticle mass loadings, Knudsen numbers, and Stokes numbers. The numerical results are compared with the available theoretical results for validation. The results show that the presence of nanoparticles enhances the flow stability, and there exists a critical particle mass loading beyond which the flow is stable. As the shape factor of the velocity profile and the Reynolds number increase, the flow becomes more unstable. However, the flow becomes more stable with the increase of the particle mass loading. The wavenumber corresponding to the maximum of wave amplification becomes large with the increase...
An in–house Fortran based two-phase Eulerian-Eulerian solver is used to numerically study an incompr...
The nucleation and coagulation of nanoparticles in the binary system of water vapor (relative humidi...
Abstract: Adding a small amount of nanoparticles to conventional fluids (nanofluids) has been proved...
In this study, a numerical study of pulsating rectangular jet with nanofluids is presented. The aim ...
In this paper, the analysis of thermal instability of rotating nanofluid layer is revised with a phy...
Laminar two-dimensional sudden expansion flow of different nanofluids is studied numerically. The go...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
Nanofibers are produced using a revolutionary technique called centrifugal jet spinning. This techni...
Nanofluids are the diluted interruptions of nano-sized particles in base fluid such as oil, ethylene...
This book describes physical, mathematical and experimental methods to model flows in micro- and nan...
In this article, a numerical study is carried out to analyze the effect of nanoparticle volume fr...
AbstractA numerical analysis of steady, laminar and 2-D nanofluid flow around a circular cylinder ha...
The instability of an interface formed at the boundary of a circular cylindrical cavity is examined ...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Atomistic molecular dynamics simulations reveal the formation of nanojets with velocities up to 400 ...
An in–house Fortran based two-phase Eulerian-Eulerian solver is used to numerically study an incompr...
The nucleation and coagulation of nanoparticles in the binary system of water vapor (relative humidi...
Abstract: Adding a small amount of nanoparticles to conventional fluids (nanofluids) has been proved...
In this study, a numerical study of pulsating rectangular jet with nanofluids is presented. The aim ...
In this paper, the analysis of thermal instability of rotating nanofluid layer is revised with a phy...
Laminar two-dimensional sudden expansion flow of different nanofluids is studied numerically. The go...
AbstractIn this paper, the analysis of thermal instability of rotating nanofluid layer is revised wi...
Nanofibers are produced using a revolutionary technique called centrifugal jet spinning. This techni...
Nanofluids are the diluted interruptions of nano-sized particles in base fluid such as oil, ethylene...
This book describes physical, mathematical and experimental methods to model flows in micro- and nan...
In this article, a numerical study is carried out to analyze the effect of nanoparticle volume fr...
AbstractA numerical analysis of steady, laminar and 2-D nanofluid flow around a circular cylinder ha...
The instability of an interface formed at the boundary of a circular cylindrical cavity is examined ...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Atomistic molecular dynamics simulations reveal the formation of nanojets with velocities up to 400 ...
An in–house Fortran based two-phase Eulerian-Eulerian solver is used to numerically study an incompr...
The nucleation and coagulation of nanoparticles in the binary system of water vapor (relative humidi...
Abstract: Adding a small amount of nanoparticles to conventional fluids (nanofluids) has been proved...