Equations of state in a lattice Boltzmann model
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Abstract
In this paper we consider the incorporation of various equations of state into the single-component multiphase lattice Boltzmann model. Several cubic equations of state, including the van der Waals, Redlich-Kwong, and Peng-Robinson, as well as a noncubic equation of state (Carnahan-Starling), are incorporated into the lattice Boltzmann model. The details of phase separation in these nonideal single-component systems are presented by comparing the numerical simulation results in terms of density ratios, spurious currents, and temperature ranges. A comparison with a real fluid system, i.e., the properties of saturated water and steam, is also presented.
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Authors
2Topics & keywords
Topics
Keywords
- Physics
- Lattice Boltzmann methods
- HPP model
- Equation of state
- Spurious relationship
- Statistical physics
- van der Waals force
- Lattice gas automaton
UN Sustainable Development Goals
- Clean water and sanitation
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