Penetration of nanometer-sized aerosol particles through the annular space between two concentric cylinders has been calculated theoretically by two alternative approaches. In the first approach, penetration was calculated from the numerical solution of the diffusion-convection equation. In the second, penetration was calculated from a MonteCarlo simulation of particle trajectories. Values of particle penetration obtained from the two methods were in quite good agreement between each other. Practical expressions correlating penetration with the dimensionless particle diffusion coefficient and the coaxial cylinders radii ratio were obtained for two specific forms of the flow velocity profile (uniform velocity and fully developed velocity pro...
Penetration of 3–10 nm particles through a metal grid has been measured using different experimental...
Numerical simulations were performed to investigate convection, diffusion and thermophoretic transpo...
A simplifi ed approach is proposed and used to study the TiO2 nanoparticle transport and diffusion i...
A previously found analytical expression for the fully developed concentration profile of aerosol pa...
Advection–diffusion transport of aerosol droplets in composite cylindrical filtration elements is an...
Flow reactors, denuders, and sampling tubes are essential tools for many applications in analytical ...
Flow reactors, denuders, and sampling tubes are essential tools for many applications in analytical ...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Knowing particle penetration efficiencies and concentration distributions in an inlet channel of a s...
The transport and deposition of nano-particles in annular pipe flows under laminar conditions were s...
Aerosol deposition in cylindrical tubes is a subject of interest to researchers and engineers in man...
© 2015 American Association for Aerosol Research. The aerosol flow through a periodic row of paralle...
A model has been developed that can be used to predict the transport of non-spherical particles in t...
The transport and deposition of nano-particles in annular threaded pipes under laminar flow conditio...
Classical theoretical treatments for diffusional deposition of particles in tube flow describe the l...
Penetration of 3–10 nm particles through a metal grid has been measured using different experimental...
Numerical simulations were performed to investigate convection, diffusion and thermophoretic transpo...
A simplifi ed approach is proposed and used to study the TiO2 nanoparticle transport and diffusion i...
A previously found analytical expression for the fully developed concentration profile of aerosol pa...
Advection–diffusion transport of aerosol droplets in composite cylindrical filtration elements is an...
Flow reactors, denuders, and sampling tubes are essential tools for many applications in analytical ...
Flow reactors, denuders, and sampling tubes are essential tools for many applications in analytical ...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Knowing particle penetration efficiencies and concentration distributions in an inlet channel of a s...
The transport and deposition of nano-particles in annular pipe flows under laminar conditions were s...
Aerosol deposition in cylindrical tubes is a subject of interest to researchers and engineers in man...
© 2015 American Association for Aerosol Research. The aerosol flow through a periodic row of paralle...
A model has been developed that can be used to predict the transport of non-spherical particles in t...
The transport and deposition of nano-particles in annular threaded pipes under laminar flow conditio...
Classical theoretical treatments for diffusional deposition of particles in tube flow describe the l...
Penetration of 3–10 nm particles through a metal grid has been measured using different experimental...
Numerical simulations were performed to investigate convection, diffusion and thermophoretic transpo...
A simplifi ed approach is proposed and used to study the TiO2 nanoparticle transport and diffusion i...