Lattice Boltzmann model for simulating flows with multiple phases and components
Модель решётчатого метода Больцмана для моделирования течений с несколькими фазами и компонентами
1993-03-01
SCID: 54.1/4yv43b39
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interparticle potentiallattice Boltzmann modelmulticomponent flowsmultiphase flowsnonideal gas equation of state
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Abstract (AI)
A lattice Boltzmann model is developed which has the ability to simulate flows containing multiple phases and components. Each of the components can be immiscible with the others and can have different mass values. The equilibrium state of each component can have a nonideal gas equation of state at a prescribed temperature exhibiting thermodynamic phase transitions. The scheme incorporated in this model is the introduction of an interparticle potential. The dynamical rules in this model are local so it is highly efficient to compute on massively parallel computers. This model has many applications in large-scale numerical simulations of various types of fluid flows.
Key Findings
1
Developed a lattice Boltzmann model that simulates flows containing multiple phases and multiple components.
2
Dynamical rules are local, making the algorithm highly efficient for massively parallel computation and suitable for large-scale fluid simulations.
3
Each component's equilibrium can follow a nonideal gas equation of state at a prescribed temperature, allowing thermodynamic phase transitions.
4
Model incorporates an interparticle potential scheme to capture interactions driving phase behavior.
5
Model supports components that are immiscible and may have different mass values.
Research Object
Lattice Boltzmann model for simulating multicomponent, multiphase fluid flows
Research Subject
Ability of the model to simulate flows with multiple immiscible components and phases including different component masses, nonideal-gas equations of state with thermodynamic phase transitions, and interparticle-potential-based interactions with local dynamical rules suitable for parallel computation
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1993-03-01
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