A novel all-Mach consistent numerical scheme is proposed for compressible two-phase flows, achieving significant improvements in predicted detail with only marginal additional computational cost: 6.65% for the turbulent jet problem and 2.06% for the bubble collapse problem. The scheme demonstrates flexibility and robustness in simulating compressible multi-component fluids, including surface tension, cavitation, turbulence modeling on compact stencils, and sharp liquid–gas and vapor–liquid interfaces.
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A novel all-Mach consistent numerical scheme is proposed for compressible two-phase flows, achieving significant improvements in predicted detail with only marginal additional computational cost: 6.65% for the turbulent jet problem and 2.06% for the bubble collapse problem. The scheme demonstrates flexibility and robustness in simulating compressible multi-component fluids, including surface tension, cavitation, turbulence modeling on compact stencils, and sharp liquid–gas and vapor–liquid inter...
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