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A sharp interface approach for cavitation modeling using volume-of-fluid and ghost-fluid methods 被引量:3

A sharp interface approach for cavitation modeling using volume-of-fluid and ghost-fluid methods
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摘要 This paper describes a novel sharp interface approach for modeling the cavitation phenomena in incompressible viscous flows. A one-field formulation is adopted for the vapor-liquid two-phase flow and the interface is tracked using a volume of fluid(VOF) method. Phase change at the interface is modeled using a simplification of the Rayleigh-Plesset equation. Interface jump conditions in velocity and pressure field are treated using a level set based ghost fluid method. The level set function is constructed from the volume fraction function. A marching cubes method is used to compute the interface area at the interface grid cells. A parallel fast marching method is employed to propagate interface information into the field. A description of the equations and numerical methods is presented. Results for a cavitating hydrofoil are compared with experimental data. This paper describes a novel sharp interface approach for modeling the cavitation phenomena in incompressible viscous flows. A one-field formulation is adopted for the vapor-liquid two-phase flow and the interface is tracked using a volume of fluid(VOF) method. Phase change at the interface is modeled using a simplification of the Rayleigh-Plesset equation. Interface jump conditions in velocity and pressure field are treated using a level set based ghost fluid method. The level set function is constructed from the volume fraction function. A marching cubes method is used to compute the interface area at the interface grid cells. A parallel fast marching method is employed to propagate interface information into the field. A description of the equations and numerical methods is presented. Results for a cavitating hydrofoil are compared with experimental data.
出处 《Journal of Hydrodynamics》 SCIE EI CSCD 2017年第6期917-925,共9页 水动力学研究与进展B辑(英文版)
基金 supported by the NSWC Carderock ILIR program by the US Office of Naval Research(Grant No.N000141-01-00-1-7)
关键词 Incompressible flow two-phase flow cavitation modeling sharp interface method ghost fluid method volume of fluidmethod level set method parallel fast marching method marching cubes method Incompressible flow, two-phase flow, cavitation modeling, sharp interface method, ghost fluid method, volume of fluidmethod, level set method, parallel fast marching method, marching cubes method
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