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Fundamental comparison between the pseudopotential and the free energy lattice Boltzmann methods

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Autor(es):
Czelusniak, Luiz Eduardo ; Martins, Ivan Talao ; Gomez, Luben Cabezas ; Bulgarelli, Natan Augusto Vieira ; Verde, William Monte ; de Castro, Marcelo Souza
Número total de Autores: 6
Tipo de documento: Artigo Científico
Fonte: PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS; v. 660, p. 17-pg., 2025-01-22.
Resumo

The pseudopotential and free energy models are two popular extensions of the lattice Boltzmann method for multiphase flows. Until now, they have been developed apart from each other in the literature. However, important questions about whether each method performs better needs to be solved. In this work, we perform a fundamental comparison between both methods through basic numerical tests. This comparison is only possible because we developed a novel approach for controlling the interface thickness in the pseudopotential method independently on the equation of state. In this way, it is possible to compare both methods maintaining the same equilibrium densities, interface thickness, surface tension and equation of state parameters. The well-balanced approach was selected to represent the free energy. We found that the free energy one is more practical to use, as it is not necessary to carry out previous simulations to determine simulation parameters (interface thickness, surface tension, etc.). In addition, the tests proofed that the free energy model is more accurate than the pseudopotential model. Furthermore, the pseudopotential method suffers from a lack of thermodynamic consistency even when applying the corrections proposed in the literature. On the other hand, for both static and dynamic tests we verified that the pseudopotential method was able to simulate lower reduced temperature than the free energy one. We hope that these results will guide authors in the use of each method. (AU)

Processo FAPESP: 23/02383-6 - Desenvolvimento de um modelo do método de lattice Boltzmann do campo de fases para a simulação da mudança de fase líquido-gás térmica para aplicações de engenharia
Beneficiário:Ivan Talão Martins
Modalidade de apoio: Bolsas no Brasil - Doutorado Direto
Processo FAPESP: 17/15736-3 - Centro de Pesquisa em Engenharia em Reservatórios e Gerenciamento de Produção de Petróleo
Beneficiário:Denis José Schiozer
Modalidade de apoio: Auxílio à Pesquisa - Programa Centros de Pesquisa em Engenharia
Processo FAPESP: 22/08305-4 - Estudo experimental e modelagem numérica do fenômeno de inversão de fase em bombas centrífugas
Beneficiário:Luiz Eduardo Czelusniak
Modalidade de apoio: Bolsas no Brasil - Pós-Doutorado