The discrete hard sphere particle model (DPM) is applied in this work to study numerically the distribution of particle and bubble granular temperatures in a bubbling fluidized bed. The dimensions of the bed and other parameters are set to correspond to those of Müller et al. (2008). Various drag models and operational parameters are investigated to find their influence on particle and bubble granular temperatures. Various inlet superficial gas velocities are used in this work to obtain their effect on flow characteristics. It is found that the superficial gas velocity has the most important effect on granular temperatures, including bubble granular temperature, particle translational granular temperature and particle rotational granular te...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
The discrete hard sphere particle model (DPM) is applied in this work to study numerically the distr...
In this work, a discrete particle model (DPM) was applied to investigate the dynamic characteristics...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
A gas–solid bubbling fluidized bed was analyzed by using a discrete hard sphere particle model...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
The effect of normal restitution coefficient and friction coefficient on the hydrodynamics of a dens...
The effect of normal restitution coefficient and friction coefficient on the hydrodynamics of a dens...
\u3cp\u3eThe effect of normal restitution coefficient and friction coefficient on the hydrodynamics ...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
The discrete hard sphere particle model (DPM) is applied in this work to study numerically the distr...
In this work, a discrete particle model (DPM) was applied to investigate the dynamic characteristics...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
A gas–solid bubbling fluidized bed was analyzed by using a discrete hard sphere particle model...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
In order to give a detailed description of the hydrodynamics in large industrial scale fluidized bed...
The effect of normal restitution coefficient and friction coefficient on the hydrodynamics of a dens...
The effect of normal restitution coefficient and friction coefficient on the hydrodynamics of a dens...
\u3cp\u3eThe effect of normal restitution coefficient and friction coefficient on the hydrodynamics ...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...
Both two-fluid models embedding the kinetic theory of granular flow for particulate phase stress (TF...