The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details near interfaces. In particular, an extended pseudopotential method is developed, which permits to tune the equation of state and surface tension independently of each other. The spurious velocity contributions of this extended model are shown to vanish in the limit of high grid refinement and/or high order isotropy. Higher order schemes to implement self-consistent forcings are rigorously computed for 2d and 3d models. The extended scenario developed in this work clarifies the theoretical foundations of the Shan-Chen methodology for the lattice Boltzmann method and enhances its applicability and flexibility to the simulation of multiphase flows...
Multiphase flows are very important in industrial application. In present study, the force schemes i...
The simulation of multiphase flows is an outstanding challenge, due to the inherent complexity of th...
Higher-order lattice Boltzmann (LB) pseudopotential models have great potential for solving complex ...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
Pseudopotential-based lattice Boltzmann models provide an efficient means to simulate multiphase flo...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Multiphase flows are very important in industrial application. In present study, the force schemes i...
The simulation of multiphase flows is an outstanding challenge, due to the inherent complexity of th...
Higher-order lattice Boltzmann (LB) pseudopotential models have great potential for solving complex ...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
The physical behavior of a class of mesoscopic models for multiphase flows is analyzed in details ne...
Pseudopotential-based lattice Boltzmann models provide an efficient means to simulate multiphase flo...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Lattice equations with multi-range interactions are formulated and characterized. We also provide in...
Multiphase flows are very important in industrial application. In present study, the force schemes i...
The simulation of multiphase flows is an outstanding challenge, due to the inherent complexity of th...
Higher-order lattice Boltzmann (LB) pseudopotential models have great potential for solving complex ...