A computational fluid dynamics simulation is done for non-Newtonian fluid in a baffled stirred tank. The CMC solution is taken as non-Newtonian shear thinning fluid for simulation. The Reynolds Average Navier Stocks equation with steady state multi reference frame approach is used to simulate flow in the stirred tank. The turbulent flow field is modelled using realizable k-ε turbulence model. The simulated velocity profiles of Rushton turbine is validated with literature data. Then, the simulated flow field of CD-6 impeller is compared with the Rushton turbine. The flow field generated by CD-6 impeller is less in magnitude than the Rushton turbine. The impeller global parameter, power number and flow number, and entropy generation due to vi...
Stirred tanks are used extensively in process industry and one of the most commonly used impellers i...
Mixing efficiency in stirred tanks is an important consideration in the design of many industrial pr...
L’étude numérique de l’influence du nombre des pales d’une turbine de Rushton sur la structure hydro...
The turbulent flow field in a mixing tank generated by the six-blade Rushton turbine impeller is pre...
Understanding the flow in stirred vessels can be useful for a wide number of industrial application...
Stirred tanks have applications in many chemical processes where mixing is important for the overall...
Computational tools are being increasingly used to analyse flow and mixing in baffled stirred vessel...
Computational and experimental methods have been used to investigate the flow field, power and mixin...
Stirred tanks are widely used in all industrial sectors. The need for further studies of the mixing ...
A theoretical study on the hydrodynamics of mixing processes in stirred tanks is described. The prim...
Stirred tanks are used extensively in process industry and one of the most commonly used impellers i...
The flow and turbulence fields in a fully baffled vessel stirred by a Rushton turbine have been simu...
The Speziale, Sarkar and Gatski Reynolds Stress Model (SSG RSM) is utilized to simulate the fluid dy...
In this paper, the data assembled concerning the agitation of a Newtonian fluid in a cylindrical ves...
Understanding the flow in stirred vessels can be useful for a wide number of industrial applications...
Stirred tanks are used extensively in process industry and one of the most commonly used impellers i...
Mixing efficiency in stirred tanks is an important consideration in the design of many industrial pr...
L’étude numérique de l’influence du nombre des pales d’une turbine de Rushton sur la structure hydro...
The turbulent flow field in a mixing tank generated by the six-blade Rushton turbine impeller is pre...
Understanding the flow in stirred vessels can be useful for a wide number of industrial application...
Stirred tanks have applications in many chemical processes where mixing is important for the overall...
Computational tools are being increasingly used to analyse flow and mixing in baffled stirred vessel...
Computational and experimental methods have been used to investigate the flow field, power and mixin...
Stirred tanks are widely used in all industrial sectors. The need for further studies of the mixing ...
A theoretical study on the hydrodynamics of mixing processes in stirred tanks is described. The prim...
Stirred tanks are used extensively in process industry and one of the most commonly used impellers i...
The flow and turbulence fields in a fully baffled vessel stirred by a Rushton turbine have been simu...
The Speziale, Sarkar and Gatski Reynolds Stress Model (SSG RSM) is utilized to simulate the fluid dy...
In this paper, the data assembled concerning the agitation of a Newtonian fluid in a cylindrical ves...
Understanding the flow in stirred vessels can be useful for a wide number of industrial applications...
Stirred tanks are used extensively in process industry and one of the most commonly used impellers i...
Mixing efficiency in stirred tanks is an important consideration in the design of many industrial pr...
L’étude numérique de l’influence du nombre des pales d’une turbine de Rushton sur la structure hydro...