The effects of Reynolds number, Schmidt number and power law index (n) on the mass transfer characteristics of a single spherical bubble rising in an incompressible power law fluid have been investigated numerically for the 2-D axisymmetric and steady flow over the ranges of conditions as 5≤Re<SUB>PL</SUB>≤100, 1≤Sc≤1000 and 0.7≤n≤2. Based on the present numerical results, a simple mass transfer correlation is developed to estimate the value of Sherwood number in a new application. Furthermore, the variation of the local Sherwood number over the surface of the bubble has also been analyzed to delineate the effects of Reynolds number, Schmidt number and power law index (n) on mass transfer from a bubble, thereby showing the extent of mass tr...
International audienceDirect Numerical Simulations are performed to investigate the gas-liquid mass ...
International audienceThe mass transfer of a rising bubble in creeping flow regime is numerically in...
A Lagrangian model has been derived that describes the size, species composition and velocity of an ...
The motion of and mass transfer from swarms of mono-size non-circulating spherical bubbles in clean ...
The steady rise of a spherical bubble through an incompressible quiescent power law fluid has been s...
The steady-state convective inter-phase mass transfer from a single Newtonian fluid sphere (free fro...
International audienceGas-liquid mass transfer from spherical bubbles is studied by DNS for various ...
The Sherwood number and drag coefficient for a single gas bubble moving in a power law fluid and a B...
A single CO2 bubble was held in a downward highly turbulent flow field realized in a tapered pipe. T...
The Sherwood number and the drag coefficient for a swarm of bubbles moving in a power law fluid are ...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
The steady convective mass transfer from ensembles of mono-size Newtonian fluid spheres to power-law...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
International audienceDirect Numerical Simulations are performed to investigate the gas-liquid mass ...
International audienceDirect Numerical Simulations are performed to investigate the gas-liquid mass ...
International audienceThe mass transfer of a rising bubble in creeping flow regime is numerically in...
A Lagrangian model has been derived that describes the size, species composition and velocity of an ...
The motion of and mass transfer from swarms of mono-size non-circulating spherical bubbles in clean ...
The steady rise of a spherical bubble through an incompressible quiescent power law fluid has been s...
The steady-state convective inter-phase mass transfer from a single Newtonian fluid sphere (free fro...
International audienceGas-liquid mass transfer from spherical bubbles is studied by DNS for various ...
The Sherwood number and drag coefficient for a single gas bubble moving in a power law fluid and a B...
A single CO2 bubble was held in a downward highly turbulent flow field realized in a tapered pipe. T...
The Sherwood number and the drag coefficient for a swarm of bubbles moving in a power law fluid are ...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
The steady convective mass transfer from ensembles of mono-size Newtonian fluid spheres to power-law...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
Continuous phase mass transfer coefficients are presented for internally circulating spheres of a Ne...
International audienceDirect Numerical Simulations are performed to investigate the gas-liquid mass ...
International audienceDirect Numerical Simulations are performed to investigate the gas-liquid mass ...
International audienceThe mass transfer of a rising bubble in creeping flow regime is numerically in...
A Lagrangian model has been derived that describes the size, species composition and velocity of an ...