Ïàòåíò ÑØÀ ¹ | 6394397 |
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Àâòîð(û) | Ngo è äð. |
Äàòà âûäà÷è | 28 ìàÿ 2002 ã. |
A tip member is movable mount at the outboard end of a main lifting member such as a wing or rotor blade. The main lifting member at least at the outboard end has an internal cavity defined therein between pressure-side and suction-side surfaces of the main lifting member. The tip member is movable relative to the main lifting member between a neutral position in which the tip member presents substantially no obstacle to a spanwise component of flow over either suction-side or pressure-side surfaces at the outboard end of the main lifting member, and a position in which a portion of the tip member extends beyond on of the pressure-side and suction-side surfaces of the main lifting member so as to present an obstacle to the spanwise component of flow over that surface at the outboard end of the main lifting member and thereby locally affect the flow at the outboard end. An actuation system for the tip member is disposed in the cavity of the main lifting member and coupled with the tip member for moving the tip member so as to vary a distance by which the tip member extends beyond the surface of the main lifting member. The tip member can be placed in stationary positions, or can be cyclically moved for achieving various effects such a vibration abatement, noise suppression, or lift augmentation.
Àâòîðû: | Hieu T. Ngo (Gilbert, AZ), Lisa E. Barlow (Peoria, AZ) |
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Çàÿâèòåëü: | The Boeing Company (Seattle, WA) |
ID ñåìåéñòâà ïàòåíòîâ | 24936460 |
Íîìåð çàÿâêè: | 09/730,702 |
Äàòà ðåãèñòðàöèè: | 06 äåêàáðÿ 2000 ã. |
Êëàññ ïàòåíòíîé êëàññèôèêàöèè ÑØÀ: | 244/199.3; 244/198; 244/201; 244/203 |
Êëàññ ñîâìåñòíîé ïàòåíòíîé êëàññèôèêàöèè: | B64C 23/065 (20130101); B64C 27/463 (20130101); Y02T 50/164 (20130101); B64C 2220/00 (20130101) |
Êëàññ ìåæäóíàðîäíîé ïàòåíòíîé êëàññèôèêàöèè (ÌÏÊ): | B64C 23/00 (20060101); B64C 27/32 (20060101); B64C 23/06 (20060101); B64C 27/46 (20060101); B64C 023/00 () |
Îáëàñòü ïîèñêà: | ;244/1N,198,199,201,203 |
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American Helicopter Society, Inc., Mach-Scale Design of a Rotor-Model with Active Blade Tips, May 25-27 1999, pp. 579-598, American Helicopter Society, Inc., Montreal, Canada. . Deutsche Gesellschaft Fur Luft--Und Raumfahrt E.V. (DGLR), The Influence of Winglets on Rotor Aerodynamics, Sep. 22-25, 1986, pp. 1029-1044, Garmisch-Partenkirchen, Federal Republic of Germany. . American Helicopter Society, Inc., Alterations of the Tip Vortex Structure from a Hovering Rotor using Passive Tip Devices, Apr. 29--May 1, 1997, pp. 755-774, American Helicopter Society, Inc., Virginia Beach, Virgina. . Special Vortices at a Helicopter Rotor Blade, pp. 16-22. . Mullins, Jr.; Smith; Rath; and Thomas, Helicopter Rotor Tip Shapes for Reduced Blade-Vortex Interaction--An Experimental Investigation, Part II, 1995, pp. 1-10, The American Institute of Aeronautics and Astronautics, Inc. . Tung; and Russell, Modifications of the Tip Vortex Structure from a Hovering Rotor using Spollers. . Snowflake 2001 NRTC/Rita Project (The Flip Tip-A-Novel Method for Reducing Blade/Vortex Interaction Noise and Improving Hover Efficiency), pp. 1-2.. |