A comprehensive model is proposed for multiphase DNS simulations of gas–solid systems involving particles of size comparable to the mean free path of the gas and to that of the bounding geometry. The model can be implemented into any multiphase Direct Numerical Simulation (DNS) method. In the current work, the Volume of Fluid (VOF) method is used, and it is extended to allow for the incorporation of rarefaction effects. For unbounded flow, the model is in excellent agreement with experimental data from the literature. For flows in closed conduits, the model outperforms the alternate approach of using a slip boundary condition at the particle surface for the most relevant degrees of rarefaction and confinement. The proposed model is also abl...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
This paper reviews the use of direct numerical simulation (DNS) models for the study of mass, moment...
A comprehensive model is proposed for multiphase DNS simulations of gas–solid systems involving part...
We propose a method for DNS of particle motion in non-isothermal systems. The method uses a shared s...
We propose a method for DNS of particle motion in non-isothermal systems. The method uses a shared s...
Numerical modeling of the phenomena in multiphase flows is today a necessary stage when developing o...
Numerical modeling of the phenomena in multiphase flows is today a necessary stage when developing o...
A novel model is proposed for simulations of gas-solid systems involving particles of size significa...
In the current work we propose a multiphase DNS method capable of resolving the motion of solid part...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
The simulation of particulate flows for industrial applications often requires the use of two-fluid ...
<p>In the current work we propose a multiphase DNS method capable of resolving the motion of solid p...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
This paper reviews the use of direct numerical simulation (DNS) models for the study of mass, moment...
A comprehensive model is proposed for multiphase DNS simulations of gas–solid systems involving part...
We propose a method for DNS of particle motion in non-isothermal systems. The method uses a shared s...
We propose a method for DNS of particle motion in non-isothermal systems. The method uses a shared s...
Numerical modeling of the phenomena in multiphase flows is today a necessary stage when developing o...
Numerical modeling of the phenomena in multiphase flows is today a necessary stage when developing o...
A novel model is proposed for simulations of gas-solid systems involving particles of size significa...
In the current work we propose a multiphase DNS method capable of resolving the motion of solid part...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
The simulation of particulate flows for industrial applications often requires the use of two-fluid ...
<p>In the current work we propose a multiphase DNS method capable of resolving the motion of solid p...
In large-scale industrial processes involving granulation, coating, and production of base chemicals...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
Gas-solid flows are commonly encountered in Nature and in several industrial applications. Emerging ...
This paper reviews the use of direct numerical simulation (DNS) models for the study of mass, moment...