Development of Multiphase Computational Fluid Dynamics
A special issue of Mathematics (ISSN 2227-7390).
Deadline for manuscript submissions: closed (30 June 2024) | Viewed by 419
Special Issue Editors
Interests: development and application of multi-fluid and multiphase solvers; high performance computing; evaluation of infrastructure damage due to underwater explosions
Special Issues, Collections and Topics in MDPI journals
Interests: computational fluid dynamics; computational magnetohydrodynamics; computational aeroacoustics; fluid-structure interaction; high-performance computing; unstructured grid generation
Special Issue Information
Dear Colleagues,
Multiphase flows arise in various scientific problems and engineering applications; for example, cooling systems in conventional nuclear reactors and compressible multiphase flows in underwater explosions. The behavior of multiphase flows is complex and can depend on various factors, such as the properties of individual phases. Modeling and understanding these types of flows is important for designing and optimizing industrial purposes and for understanding natural phenomena, such as weather patterns and ocean currents.
The purpose of this issue is to present the current state of the art of this research field in the modeling of multiphase flows and the mathematical and computational methods: Volume of fluid (VOF), level set method, lattice Boltzmann method, finite volume, finite differences, discontinuous Galerkin, interface sharpening techniques, phase transition models, cavitations. multiphase reactive flows, multiphase turbulence, etc.
Dr. Li Lingquan
Prof. Dr. Hong Luo
Guest Editors
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Keywords
- volume of fluid
- level set
- lattice Boltzmann
- discontinuous Galerkin
- finite difference
- interface sharpening
- phase transition
- reactive flows
- multiphase turbulence
- cavitations
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