Gas-solid flows are commonly found in nature, as well as in industries. In such flows the size of the solid particles generally is not uniform. In addition, usually there is heat transfer between solid particles and gas flows. The hydrodynamics and heat transfer both make the behavior of gas-solid flows extremely complicated. In order to reveal these effects, in this paper three cases: (1) two isothermal, (2) two hot and (3) two cold spherical particles with various size ratios are investigated using lattice Boltzmann method-immersed boundary (LB-IB). It is observed that, for the first time, the tumbling duration of both two hot particles and two cold particles settling in vertical channel, is prolonged with size ratio increasing. The diffe...
Various numerical schemes have been developed in recent years to simulate particle-laden flows. The ...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
We present results of interface-resolved simulations of heat transfer in suspensions of finite-size ...
Gas-solid flows are commonly found in nature, as well as in industries. In such flows the size of th...
In most realistic gas–solid flow, the difference of particles’ temperature is significant. The heat ...
We numerically study the drafting, kissing and tumbling (DKT) phenomenon of two non-identical circul...
Particle sedimentation is a fundamental process encountered in various industrial applications. In t...
In our recent work (Zhang et al., 2015), a Particulate Immersed Boundary Method (PIBM) for simulatin...
Dispersed two-phase flows often involve interfacial activities such as chemical reaction and phase c...
A multiphase DNS (direct numerical simulation) method is used to investigate two types of particle-p...
AbstractA multiphase DNS (direct numerical simulation) method is used to investigate two types of pa...
Solid particles and liquid droplets widely coexist in many industrial processes. Particle-droplet in...
Tsutsumi, T et al. Flow Turbulence Combust (2014) 92: 103. doi:10.1007/s10494-013-9498-0The final pu...
Shintaro Takeuchi, Takaaki Tsutsumi and Takeo Kajishima, "Effect of temperature gradient within a so...
The effect of particles falling under gravity in a weakly turbulent Rayleigh-Bénard gas flow is stud...
Various numerical schemes have been developed in recent years to simulate particle-laden flows. The ...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
We present results of interface-resolved simulations of heat transfer in suspensions of finite-size ...
Gas-solid flows are commonly found in nature, as well as in industries. In such flows the size of th...
In most realistic gas–solid flow, the difference of particles’ temperature is significant. The heat ...
We numerically study the drafting, kissing and tumbling (DKT) phenomenon of two non-identical circul...
Particle sedimentation is a fundamental process encountered in various industrial applications. In t...
In our recent work (Zhang et al., 2015), a Particulate Immersed Boundary Method (PIBM) for simulatin...
Dispersed two-phase flows often involve interfacial activities such as chemical reaction and phase c...
A multiphase DNS (direct numerical simulation) method is used to investigate two types of particle-p...
AbstractA multiphase DNS (direct numerical simulation) method is used to investigate two types of pa...
Solid particles and liquid droplets widely coexist in many industrial processes. Particle-droplet in...
Tsutsumi, T et al. Flow Turbulence Combust (2014) 92: 103. doi:10.1007/s10494-013-9498-0The final pu...
Shintaro Takeuchi, Takaaki Tsutsumi and Takeo Kajishima, "Effect of temperature gradient within a so...
The effect of particles falling under gravity in a weakly turbulent Rayleigh-Bénard gas flow is stud...
Various numerical schemes have been developed in recent years to simulate particle-laden flows. The ...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
We present results of interface-resolved simulations of heat transfer in suspensions of finite-size ...