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- W3096456439 abstract "Supercavitation is a hydrodynamic behavior, which leads to a drastic reduction in hydrodynamic drag by allowing the bodies to travel inside a self-generated bubble of water vapor or gas. The world’s major navies are developing entire arsenals of totally new high-speed underwater weapons based on the physical phenomenon of supercavitation. This research concentrates the shape of the cavitator optimization by means of numerical investigation. The shapes of the axisymmetric cavitators like disc, hemispherical, conical and edged double conical were considered with the same diameter. The modeling and CFD analysis were conducted in ANSYS Fluent 16.0. The RNG K-epsilon turbulence model used to evaluate the performance of various shapes of the axisymmetric cavitators. The Contours of Density (Mixture), the Contours of Volume Fraction (Water) and the Contours of Volume Fraction (Vapor) considered for comparison and resulted length of supercavity is used to optimize the shape." @default.
- W3096456439 created "2020-11-09" @default.
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- W3096456439 date "2020-01-01" @default.
- W3096456439 modified "2023-10-14" @default.
- W3096456439 title "CFD based shape optimization of axisymmetric cavitators in supercavitating flows" @default.
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- W3096456439 doi "https://doi.org/10.1063/5.0025254" @default.
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