Claims
- 1. A drag reduction device for use on a ground vehicle, comprising:
a porous outer surface attached to the aft portion of a ground vehicle; a substantially solid inner surface; and said outer and said inner surfaces being configured and disposed to form a space therebetween, to permit the entrance and exit of air into and out of said space, whereby the asymmetric character of the external trailing wake flow field of the ground vehicle is changed to a substantially steady and laterally symmetric trailing wake flow field.
- 2. The drag reduction device according to claim 1, wherein the porous outer surface has a thickness between about {fraction (1/16)}inch (0.16 cm) and 1 inch (2.54 cm).
- 3. The drag reduction device according to claim 1, wherein the porous outer surface has a surface porosity between about 10 and 20 percent.
- 4. The drag reduction device according to claim 1, wherein the space formed between said outer and said inner surfaces has a width equal to at least the thickness of said porous outer surface.
- 5. The drag reduction device according to claim 1 wherein said porous outer surface comprises:
a first portion and at least one second portion; said first portion being attached to a trailing surface of the ground vehicle; and said at least one second portion being attached to at least one side of said ground vehicle.
- 6. The drag reduction device according to claim 1 wherein said first portion comprises perforations having a maximum dimension of about 0.5 inch.
- 7. The drag reduction device according to claim 1 wherein said at least one second portion comprises perforations having a maximum dimension of about 0.25 inch.
- 8. A drag reduction device for a ground vehicle, comprising:
a porous outer surface on the aft portion of a ground vehicle; a substantially solid inner surface; and said outer and said inner surfaces being configured and disposed to form a plenum therebetween, to permit the entrance and exit of air into and out of said space, whereby the asymmetric character of the external trailing wake flow field of the ground vehicle is altered such that drag is reduced.
- 9. The drag reduction device according to claim 8, wherein the porous outer surface has a thickness between about {fraction (1/16)}inch (0.16 cm) and 1 inch (2.54 cm).
- 10. The drag reduction device according to claim 8, wherein the porous outer surface has a surface porosity between about 10 and 20 percent.
- 11. The drag reduction device according to claim 8, wherein the space formed between said outer and said inner surfaces has a width equal to at least the thickness of said porous outer surface.
- 12. The drag reduction device according to claim 8 wherein said porous outer surface comprises:
a first portion and at least one second portion; said first portion being attached to a trailing surface of the ground vehicle; and said at least one second portion being attached to at least one side of said ground vehicle.
- 13. The drag reduction device according to claim 8 wherein said first portion comprises perforations having a maximum dimension of about 0.5 inch.
- 14. The drag reduction device according to claim 8 wherein said at least one second portion comprises perforations having a maximum dimension of about 0.25 inch.
- 15. A method for reducing drag of a ground vehicle comprising the steps of:
attaching a porous outer surface to the aft portion of a ground vehicle; aligning said porous outer surface with a corresponding substantially solid surface; and configuring and disposing said porous and said substantially solid surfaces to form a space therebetween, to permit the entrance and exit of air into and out of said space, whereby the asymmetric character of the external trailing wake flow field of the ground vehicle is changed to a substantially steady and laterally symmetric trailing wake flow field.
- 16. The drag reduction method according to claim 15, wherein the porous outer surface has a thickness between about {fraction (1/16)}inch (0.16 cm) and 1 inch (2.54 cm).
- 17. The drag reduction method according to claim 15, wherein the porous outer surface has a surface porosity between about 10 and 20 percent.
- 18. The drag reduction method according to claim 15, wherein the space formed between said outer and said inner surfaces has a width equal to at least the thickness of said porous outer surface.
- 19. The drag reduction method according to claim 15 wherein said porous outer surface comprises:
a first portion and at least one second portion; said first portion being attached to a trailing surface of the ground vehicle; and said at least one second portion being attached to at least one side of said ground vehicle.
- 20. The drag reduction method according to claim 15 wherein said first portion comprises perforations having a maximum dimension of about 0.5 inch.
- 21. The drag reduction method according to claim 15 wherein said at least one second portion comprises perforations having a maximum dimension of about 0.25 inch.
- 22. A method for reducing drag of a ground vehicle comprising the steps of:
perforating the outer surface of the aft portion of a ground vehicle; aligning said porous outer surface with a corresponding substantially solid surface; and configuring and disposing said porous and said substantially solid surfaces to form a space therebetween, to permit the entrance and exit of air into and out of said space, whereby the asymmetric character of the external trailing wake flow field of the ground vehicle is changed to a substantially steady and laterally symmetric trailing wake flow field.
- 23. The drag reduction method according to claim 22, wherein the porous outer surface has a thickness between about {fraction (1/16)}inch (0.16 cm) and 1 inch (2.54 cm).
- 24. The drag reduction method according to claim 22, wherein the porous outer surface has a surface porosity between about 10 and 20 percent.
- 25. The drag reduction method according to claim 22, wherein the space formed between said outer and said inner surfaces has a width equal to at least the thickness of said porous outer surface.
- 26. The drag reduction method according to claim 22 wherein said porous outer surface comprises:
a first portion and at least one second portion; said first portion being attached to a trailing surface of the ground vehicle; and said at least one second portion being attached to at least one side of said ground vehicle.
- 27. The drag reduction method according to claim 22 wherein said first portion comprises perforations having a maximum dimension of about 0.5 inch.
- 28. The drag reduction method according to claim 22 wherein said at least one second portion comprises perforations having a maximum dimension of about 0.25 inch.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of co-pending U.S. application Ser. No. 08/744,414, filed Nov. 1, 1996, which was a continuation-in-part of Ser. No. 08/327,061, filed Oct. 19, 1994.
ORIGIN OF THE INVENTION
[0002] The invention described herein was made by employees of the United States Government and may be used by and for the Government for governmental purposes without the payment of any royalties thereon or therefor.
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
08744414 |
Nov 1996 |
US |
Child |
09951857 |
Sep 2001 |
US |
Parent |
08327061 |
Oct 1994 |
US |
Child |
08744414 |
Nov 1996 |
US |