| United States Patent | RE35,387 |
| Strom | December 3, 1996 |
A superagile tactical fighter aircraft and a method of flying it are disclosed. The superagile aircraft is characterized by articulatable air inlets, articulatable exhaust nozzles, highly deflectable canard surfaces, and control thruster jets located around the nose of the fuselage, on the top and bottom surfaces of the propulsion system near the exhaust nozzles, and on both sides of at least one vertical tail. The method of operating the superagile aircraft comprises the step of articulating the air inlets and exhaust nozzles, deflecting the canard surfaces, and vectoring the thruster jets so that supernormal flight is attained. Supernormal flight may be defined as flight at which the superagile aircraft operates at an angle of attack much greater than the angle of attack which produces maximum lift. In supernormal flight, the superagile aircraft is capable of almost vertical ascents, sharp turns, and very steep descents without losing control. Enhanced survivability of the pilot and the aircraft is achieved by the invention.
| Inventors: | Strom; Thomas H. (Hampton, VA) |
| Assignee: |
Dynamic Engineering, Inc.
(Newport News,
VA)
|
| Appl. No.: | 07/828,219 |
| Filed: | January 30, 1992 |
| Application Number | Filing Date | Patent Number | Issue Date | ||
| 721664 | Apr., 1985 | ||||
| Reissue of: | 194734 | Sep., 1987 | 04896846 | Jan., 1990 | |
| Current U.S. Class: | 244/75.1 ; 244/12.5; 244/45A; 244/52; 244/53B |
| Current International Class: | B64C 5/00 (20060101); B64C 13/00 (20060101); B64C 15/00 (20060101); B64C 39/12 (20060101); B64C 15/14 (20060101); B64C 5/04 (20060101); B64C 5/16 (20060101); B64C 39/00 (20060101); F02K 1/00 (20060101); B64C 009/00 (); B64C 015/00 () |
| Field of Search: | 244/45R,45A,12.5,23D,214,53B,52,7C,7B |
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SAE Technical Paper Series, No. 821469, "Flight at Supernormal Attitudes" by Thomas H. Strom and William J. Alford, Jr., for Aerospace Congress & Exposition, Oct. 25-28, 1982 Anaheim, California. . J. A. Laughrey, D. J. Drape and P. E. Hiley; Performance Evaluation of an Air Vehicle Utilizing Nonaxisymmetric Nozzles; Feb. 1981; pp. 89-95 vol. 18, Journal of Aircraft. . Herbst, "10 Jahre TKF/J--90 Vorentwicklung", 17-19 Oct. 1983, pp. 15-23, New Projects & Planning in the Air Force, Munich/Germany. . Scott, "NASA Researches Aircraft Control During Deep Stall", 31 Oct. 1983, pp. 53 & 54, Aviation Week & Space Technology. . Thomas A. Horne, "Breaking the Stall Barrier", May 1984, AOPA Pilot. . European Patent Office Technical Board of Appeal, "In re European Pat. Publ. No. 45987 of Boeing Co.", 10 Oct. 1985, pp. 121-128, Journal of EPO. . Kraus et al., "High Angle of Attack Characteristics of Different Fighter Configurations", 4 Oct. 1978, AGARD Conference, Neuilly-sur-Seine/France. . W. B. Herbst, "Future Fighter Technologies", Aug. 1980, pp. 561-566, vol. 17, Journal of Aircraft. . Herbst, "Design for Air Combat", Oct. 1981, AGARD FMP Conference, Florence/Italy. . Kraus et al., "Stability and Control for High Angle of Attack Maneuvering", 19 Apr. 1982, AGARD Conference, Neuilly-sur-Seine/France. . Strom et al., "Controllable supernormal flight: a future possibility", Dec. 1982, pp. 48-53, vol. 90, for Automotive Engineering. . Moore et al., "X-29 Forward Swept Wing Aerodynamic Overview", 13-15 Jul. 1983, AIAA Applied Aerodynamics Conference, Danvers/Massachusetts pp. 1-8. . Herbst, "Supermaneuverability", 17-19 Oct. 1983, Jahrbuch 1983 I, Munich/Germany.. |