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Assessment of passive porosity with free and fixed separation on a tangent ogive forebody
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Citations
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References
1992
Year
AeroacousticsEngineeringPorous Medium EquationsMechanical EngineeringFluid MechanicsPassive PorosityPorous MembraneBoundary LayerPorous BodyUnsteady FlowFixed SeparationFixed Cross-flow SeparationMultiphase FlowPore StructureCross-flow SeparationCivil EngineeringTangent Ogive ForebodyGeomechanicsPorosityAerodynamics
Subsonic wind tunnel tests were performed on solid and porous (22 percent) 5.0-caliber forebody models to assess the effect of free and fixed cross-flow separation on the effectiveness of passive porosity. The effectiveness of passive porosity to control the local pressure loading for forced cross-flow separation is found to be similar to that observed for the free cross-flow separation condition. It is also found that the effectiveness of passive porosity is significantly enhanced in the presence of large positive pressures on the porous surface.
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