Tomeki

Explore Books on
cavities (airplanes)

1-14 of 14 Books

View Three-dimensional cavity flow fields at subsonic and transonic speeds By Elizabeth B. Plentovich

Three-dimensional cavity flow fields at subsonic and transonic speeds

Three-dimensional cavity flow fields at subsonic and transonic speeds

By Elizabeth B. Plentovich

View Flow-induced resonance of screen-covered cavities By Paul T. Soderman

Flow-induced resonance of screen-covered cavities

Flow-induced resonance of screen-covered cavities

By Paul T. Soderman

View Supersonic axial-force characteristics of a rectangular-box cavity with various length-to-depth ratios in a flat plate By A. B. Blair

Supersonic axial-force characteristics of a rectangular-box cavity with various length-to-depth ratios in a flat plate

Supersonic axial-force characteristics of a rectangular-box cavity with various length-to-depth ratios in a flat plate

By A. B. Blair

View Landing gear and cavity noise prediction By Donald B. Bliss

Landing gear and cavity noise prediction

Landing gear and cavity noise prediction

By Donald B. Bliss

View Solution of the Navier-Stokes equations for a driven cavity By B. D. Semeraro

Solution of the Navier-Stokes equations for a driven cavity

Solution of the Navier-Stokes equations for a driven cavity

By B. D. Semeraro

View Supersonic aerodynamic interference effects of store separation By Oktay Baysal

Supersonic aerodynamic interference effects of store separation

Supersonic aerodynamic interference effects of store separation

By Oktay Baysal

View Tests at a mach number of 2.0 on a rectangular, twin-duct air intake with variable geometry, situated in the flow field of a slender wing By M. D. Dobson

Tests at a mach number of 2.0 on a rectangular, twin-duct air intake with variable geometry, situated in the flow field of a slender wing

Tests at a mach number of 2.0 on a rectangular, twin-duct air intake with variable geometry, situated in the flow field of a slender wing

By M. D. Dobson

View Experimental cavity pressure measurements at subsonic and transonic speeds By

Experimental cavity pressure measurements at subsonic and transonic speeds

Experimental cavity pressure measurements at subsonic and transonic speeds

By

View Wind-tunnel experiments on the flow over rectangular cavities at subsonic and transonic speeds By J. E. Rossiter

Wind-tunnel experiments on the flow over rectangular cavities at subsonic and transonic speeds

Wind-tunnel experiments on the flow over rectangular cavities at subsonic and transonic speeds

By J. E. Rossiter

View An unsteady time asymptotic flow in the square driven cavity By John W. Goodrich

An unsteady time asymptotic flow in the square driven cavity

An unsteady time asymptotic flow in the square driven cavity

By John W. Goodrich

View Characterization of cavity flow fields using pressure data obtained in the Langley 0.3-Meter Transonic Cryogenic Tunnel By M. B. Tracy

Characterization of cavity flow fields using pressure data obtained in the Langley 0.3-Meter Transonic Cryogenic Tunnel

Characterization of cavity flow fields using pressure data obtained in the Langley 0.3-Meter Transonic Cryogenic Tunnel

By M. B. Tracy

View Measurements of forces, moments, and pressures on a generic store separating from a box cavity at supersonic speeds By Robert L. Stallings

Measurements of forces, moments, and pressures on a generic store separating from a box cavity at supersonic speeds

Measurements of forces, moments, and pressures on a generic store separating from a box cavity at supersonic speeds

By Robert L. Stallings

View Evaluation of a vortex model of turbulent cavity flow By Jay C Hardin

Evaluation of a vortex model of turbulent cavity flow

Evaluation of a vortex model of turbulent cavity flow

By Jay C Hardin

View Effects of yaw angle and Reynolds number on rectangular-box cavities at subsonic and transonic speeds By Elizabeth B. Plentovich

Effects of yaw angle and Reynolds number on rectangular-box cavities at subsonic and transonic speeds

Effects of yaw angle and Reynolds number on rectangular-box cavities at subsonic and transonic speeds

By Elizabeth B. Plentovich