Transport of nanoparticles and coagulation is simulated with the combination of CFD in a circular bend. The Taylor-expansion moment method (TEMOM) is employed to study dynamics of nanoparticles with Brownian motion, based on the flow field from numerical simulation. A fully developed flow pattern in the present simulation is compared with previous numerical results for validating the model and computational code. It is found that for the simulated particulate flow system, the particle mass concentration, number concentration, particle polydispersity, mean particle diameter and geometric standard deviation over cross-section increase with time. The distribution of particle mass concentration at different time is independent of the initial pa...
A complete CFD model for nano-aerosol dynamics is presented and discussed. It consists in an Euleria...
International audienceThis study aims at numerical simulation of nanoparticle transport in flue-gas ...
This paper presented experimental views of nano- and microaerosol distribution and deposition in tur...
Transport of nanoparticles and coagulation is simulated with the combination of CFD in a circular be...
Numerical simulations of nanoparticle migration in a fully developed turbulent pipe flow are perform...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Large eddy simulation and discrete particle model have been used to study the nanoparticles throu...
Large eddy simulation and discrete particle model have been used to study the nanoparticles through ...
In this paper, the dynamic evolution of nanoparticles in a turbulent Taylor–Couette flow was studied...
International audienceA complete CFD model for nano-aerosol dynamics is presented and discussed. It ...
International audiencetA quadrature method of moments, based on the population balance approach, was...
Un modèle complet permettant de simuler la dynamique d'un nano-aérosol est présenté et discuté. On c...
The transport and deposition of nano-particles in annular pipe flows under laminar conditions were s...
A model has been developed that can be used to predict the transport of non-spherical particles in t...
AbstractThe oblique collision efficiency of nanoparticles at different colliding angles in Brownian ...
A complete CFD model for nano-aerosol dynamics is presented and discussed. It consists in an Euleria...
International audienceThis study aims at numerical simulation of nanoparticle transport in flue-gas ...
This paper presented experimental views of nano- and microaerosol distribution and deposition in tur...
Transport of nanoparticles and coagulation is simulated with the combination of CFD in a circular be...
Numerical simulations of nanoparticle migration in a fully developed turbulent pipe flow are perform...
The Reynolds averaged N-S equation and dynamic equation for nanoparticles are numerically solved in ...
Large eddy simulation and discrete particle model have been used to study the nanoparticles throu...
Large eddy simulation and discrete particle model have been used to study the nanoparticles through ...
In this paper, the dynamic evolution of nanoparticles in a turbulent Taylor–Couette flow was studied...
International audienceA complete CFD model for nano-aerosol dynamics is presented and discussed. It ...
International audiencetA quadrature method of moments, based on the population balance approach, was...
Un modèle complet permettant de simuler la dynamique d'un nano-aérosol est présenté et discuté. On c...
The transport and deposition of nano-particles in annular pipe flows under laminar conditions were s...
A model has been developed that can be used to predict the transport of non-spherical particles in t...
AbstractThe oblique collision efficiency of nanoparticles at different colliding angles in Brownian ...
A complete CFD model for nano-aerosol dynamics is presented and discussed. It consists in an Euleria...
International audienceThis study aims at numerical simulation of nanoparticle transport in flue-gas ...
This paper presented experimental views of nano- and microaerosol distribution and deposition in tur...