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f-18 aircraft

1-24 of 45 Books

View Numerical simulation of the flow about the F-18 HARV at high angle of attack By Scott M. Murman

Numerical simulation of the flow about the F-18 HARV at high angle of attack

Numerical simulation of the flow about the F-18 HARV at high angle of attack

By Scott M. Murman

View Extraction of lateral-directional stability and control derivatives for the basic F-18 aircraft at high angles of attack By Kenneth W. Iliff

Extraction of lateral-directional stability and control derivatives for the basic F-18 aircraft at high angles of attack

Extraction of lateral-directional stability and control derivatives for the basic F-18 aircraft at high angles of attack

By Kenneth W. Iliff

View Navier-Stokes, flight, and wind tunnel flow analysis for the F/A-18 aircraft By Farhad Ghaffari

Navier-Stokes, flight, and wind tunnel flow analysis for the F/A-18 aircraft

Navier-Stokes, flight, and wind tunnel flow analysis for the F/A-18 aircraft

By Farhad Ghaffari

View In-flight leading-edge extension vortex flow-field survey measurements on a F-18 aircraft at high angle of attack By David M. Richwine

In-flight leading-edge extension vortex flow-field survey measurements on a F-18 aircraft at high angle of attack

In-flight leading-edge extension vortex flow-field survey measurements on a F-18 aircraft at high angle of attack

By David M. Richwine

View Water-tunnel study results of a TF/A-18 and F/A-18 canopy flow visualization By Steven A. Johnson

Water-tunnel study results of a TF/A-18 and F/A-18 canopy flow visualization

Water-tunnel study results of a TF/A-18 and F/A-18 canopy flow visualization

By Steven A. Johnson

View F-18 High Alpha Research Vehicle surface pressures By David F. Fisher

F-18 High Alpha Research Vehicle surface pressures

F-18 High Alpha Research Vehicle surface pressures

By David F. Fisher

View Summary of in-flight flow visualization obtained from the NASA high alpha research vehicle By David F. Fisher

Summary of in-flight flow visualization obtained from the NASA high alpha research vehicle

Summary of in-flight flow visualization obtained from the NASA high alpha research vehicle

By David F. Fisher

View Fiber optic experience with the smart actuation system on the F-18 systems research aircraft By Eddie Zavala

Fiber optic experience with the smart actuation system on the F-18 systems research aircraft

Fiber optic experience with the smart actuation system on the F-18 systems research aircraft

By Eddie Zavala

View Installed F/A-18 inlet flow calculations at 30 degrees angle-of-attack, a comparative study By C. Frederic Smith

Installed F/A-18 inlet flow calculations at 30 degrees angle-of-attack, a comparative study

Installed F/A-18 inlet flow calculations at 30 degrees angle-of-attack, a comparative study

By C. Frederic Smith

View In-flight flow visualization characteristics of the NASA F-18 high alpha research vehicle at high angles of attack By David F. Fisher

In-flight flow visualization characteristics of the NASA F-18 high alpha research vehicle at high angles of attack

In-flight flow visualization characteristics of the NASA F-18 high alpha research vehicle at high angles of attack

By David F. Fisher

View Ground-recorded sonic boom signatures of F-18 aircraft in formation flight By Catherine M. Bahm

Ground-recorded sonic boom signatures of F-18 aircraft in formation flight

Ground-recorded sonic boom signatures of F-18 aircraft in formation flight

By Catherine M. Bahm

View Flight-determined, subsonic, lateral-directional stability and control derivatives of the thrust-vectoring F-18 high angle of attack research vehicle (HARV), and comparisons to the basic F-18 and predicted derivates By Kenneth W. Lliff

Flight-determined, subsonic, lateral-directional stability and control derivatives of the thrust-vectoring F-18 high angle of attack research vehicle (HARV), and comparisons to the basic F-18 and predicted derivates

Flight-determined, subsonic, lateral-directional stability and control derivatives of the thrust-vectoring F-18 high angle of attack research vehicle (HARV), and comparisons to the basic F-18 and predicted derivates

By Kenneth W. Lliff

View Performance of an electro-hydrostatic actuator on the F-18 systems research aircraft By Robert Navarro

Performance of an electro-hydrostatic actuator on the F-18 systems research aircraft

Performance of an electro-hydrostatic actuator on the F-18 systems research aircraft

By Robert Navarro

View Modeling of aircraft unsteady aerodynamic characteristics By Vladislav Klein

Modeling of aircraft unsteady aerodynamic characteristics

Modeling of aircraft unsteady aerodynamic characteristics

By Vladislav Klein

View F-18 high research vehicle (HARV) parameter identification flight test maneuvers for optimal input design validation and lateral control effectiveness By Eugene A. Morelli

F-18 high research vehicle (HARV) parameter identification flight test maneuvers for optimal input design validation and lateral control effectiveness

F-18 high research vehicle (HARV) parameter identification flight test maneuvers for optimal input design validation and lateral control effectiveness

By Eugene A. Morelli

View Performance validation of the ANSER control laws for the F-18 HARV By Michael D. Messina

Performance validation of the ANSER control laws for the F-18 HARV

Performance validation of the ANSER control laws for the F-18 HARV

By Michael D. Messina

View Multiaxis thrust-vectoring characteristics of a model representative of the F-18 High-Alpha Research Vehicle at angles of attack from 0 ̊to 70 ̊ By Scott C. Asbury

Multiaxis thrust-vectoring characteristics of a model representative of the F-18 High-Alpha Research Vehicle at angles of attack from 0 ̊to 70 ̊

Multiaxis thrust-vectoring characteristics of a model representative of the F-18 High-Alpha Research Vehicle at angles of attack from 0 ̊to 70 ̊

By Scott C. Asbury

View Effect of actuated forebody strakes on the forebody aerodynamics of the NASA F-18 HARV By David F. Fisher

Effect of actuated forebody strakes on the forebody aerodynamics of the NASA F-18 HARV

Effect of actuated forebody strakes on the forebody aerodynamics of the NASA F-18 HARV

By David F. Fisher

View Computational analysis of forebody tangential slot blowing on the high alpha research vehicle By Ken Gee

Computational analysis of forebody tangential slot blowing on the high alpha research vehicle

Computational analysis of forebody tangential slot blowing on the high alpha research vehicle

By Ken Gee

View Aeroservoelastic modeling and validation of a thrust-vectoring F/A-18 aircraft By Martin J. Brenner

Aeroservoelastic modeling and validation of a thrust-vectoring F/A-18 aircraft

Aeroservoelastic modeling and validation of a thrust-vectoring F/A-18 aircraft

By Martin J. Brenner

View Thrust vectoring on the NASA F-18 high alpha research vehicle By Albion H. Bowers

Thrust vectoring on the NASA F-18 high alpha research vehicle

Thrust vectoring on the NASA F-18 high alpha research vehicle

By Albion H. Bowers

View A method for integrating thrust-vectoring and actuated forebody strakes with conventional aerodynamic controls on a high-performance fighter airplane By Frederick J. Lallman

A method for integrating thrust-vectoring and actuated forebody strakes with conventional aerodynamic controls on a high-performance fighter airplane

A method for integrating thrust-vectoring and actuated forebody strakes with conventional aerodynamic controls on a high-performance fighter airplane

By Frederick J. Lallman

View Fiber optic control system integration for advanced aircraft By Bradley L. Kessler

Fiber optic control system integration for advanced aircraft

Fiber optic control system integration for advanced aircraft

By Bradley L. Kessler

View Flutter clearance of the F-18 high-angle-of-attack research vehicle with experimental wingtip instrumentation pods By Lawrence C. Freudinger

Flutter clearance of the F-18 high-angle-of-attack research vehicle with experimental wingtip instrumentation pods

Flutter clearance of the F-18 high-angle-of-attack research vehicle with experimental wingtip instrumentation pods

By Lawrence C. Freudinger