Drag coefficients of irregularly shaped particles, constructed from spheres, were measured in lattice-Boltzmann simulations and compared to literature data. The agreement is very well. The distance between the spheres was increased to study the influence of inter-particle distance on the drag force in clusters. The drag coefficient of the clusters was found to increase with inter-particle distance. The drag force on an individual particle in a cluster is lower when that particle is shielded from the flow by other particles
Extensive lattice-Boltzmann simulations were performed to obtain the drag force for random arrays of...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
Lattice Boltzmann method was used to predict the fluid-particle interaction for arbitrary shaped par...
Drag coefficients of irregularly shaped particles, constructed from spheres, were measured in lattic...
Drag coefficients of irregularly shaped particles, constructed from spheres, were measured in lattic...
We report on lattice-Boltzmann simulations of slow fluid flow past mono- and bidisperse random array...
Fast fluidization of fine particles leads to formation of particle clusters, which significantly aff...
We report on lattice-Boltzmann simulations of slow fluid flow past mono- and bidisperse random array...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Fluid–solid drag force correlations, such as the Ergun relation, are widely used in many areas of ch...
Fast fluidization of fine particles leads to formation of particle clusters, which significantly aff...
Extensive lattice-Boltzmann simulations were performed to obtain the drag force for random arrays of...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
Lattice Boltzmann method was used to predict the fluid-particle interaction for arbitrary shaped par...
Drag coefficients of irregularly shaped particles, constructed from spheres, were measured in lattic...
Drag coefficients of irregularly shaped particles, constructed from spheres, were measured in lattic...
We report on lattice-Boltzmann simulations of slow fluid flow past mono- and bidisperse random array...
Fast fluidization of fine particles leads to formation of particle clusters, which significantly aff...
We report on lattice-Boltzmann simulations of slow fluid flow past mono- and bidisperse random array...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Formation of particle clusters in fast fluidization of fine particles significantly affects the gas-...
Fluid–solid drag force correlations, such as the Ergun relation, are widely used in many areas of ch...
Fast fluidization of fine particles leads to formation of particle clusters, which significantly aff...
Extensive lattice-Boltzmann simulations were performed to obtain the drag force for random arrays of...
The variation of the drag (CD) and lift coefficients (CL) of two fixed solid spherical particles pla...
Lattice Boltzmann method was used to predict the fluid-particle interaction for arbitrary shaped par...