Claims
- 1. A method of adjusting the output fan spray angular orientation of a fluidic oscillator having an oscillation chamber with an oscillation chamber centerline and an exit throat for issuing a fan spray to ambient without physical rotation of the fluidic oscillator comprising:said exit throat having a centerline, shifting said exit throat centerline such that said exit throat centerline is not coaxial with said oscillation chamber centerline.
- 2. The method defined in claim 1 wherein said fluidic oscillator has at least a pair of power nozzles issuing jets of liquid into said oscillation chamber and each power nozzle has an axis, the further improvement wherein said axes of said power nozzles do not intersect on said oscillation chamber centerline.
- 3. In a fluidic oscillator for issuing a liquid spray to ambient, the fluidic oscillator having an oscillation chamber with an upstream end and a downstream end, at least one power nozzle for issuing a jet of fluid into said oscillation chamber, and an exit throat at the downstream end for issuing an oscillating jet of liquid to ambient, said oscillation chamber having a centerline, the improvement comprising:means to cause said fluidic oscillator to issue a sweeping jet of fluid which is yawed to a selected side of said centerline.
- 4. The fluidic oscillator defined in claim 3 wherein said at least one power nozzle is aligned with said centerline and issues a liquid jet into said oscillation chamber along said centerline.
- 5. The fluidic oscillator defined in claim 4 wherein said means includes an exit throat which has a centerline which is not co-linear with the centerline of said oscillation chamber.
- 6. The fluidic oscillator defined in claim 3 wherein there are at least a pair of said power nozzles, each power nozzle having an axis with an orientation angle which intersects at the common point on said centerline.
- 7. The fluidic oscillator defined in claim 3 wherein there is at least a pair of said power nozzles, said means includes each power nozzle having an axis with respective orientation angles which do not intersect at said centerline.
- 8. The fluidic oscillator defined in claim 7 wherein said at least one outlet has an outlet throat region and said throat region is offset relative to said centerline.
- 9. The fluidic oscillator defined in claim 3 wherein said means includes offsetting said outlet relative to said centerline.
- 10. A fluidic oscillator for issuing a jet of liquid spray to ambient, said fluidic oscillator having an oscillation chamber with an upstream end and a downstream end and at least one power nozzle for issuing a jet of liquid into said oscillation chamber at said upstream end and an exit throat at said downstream end for issuing a sweeping jet of liquid to ambient to form a spray having a given centerline which is yawed relative to the centerline of said oscillation chamber.
REFERENCE TO RELATED APPLICATION
This application is the subject of provisional application Ser. No. 60/139,485 filed Jun. 17, 1999 entitled METHOD YAWING THE SPRAYS ISSUED FROM FLUIDIC OSCILLATORS and is a continuation-in-part of Raghu U.S. application Ser. No. 09/417,899 filed Oct. 14, 1999 entitled FEEDBACK-FREE FLUIDIC OSCILLATOR AND METHOD.
US Referenced Citations (5)
Provisional Applications (1)
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Date |
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60/139485 |
Jun 1999 |
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Continuation in Parts (1)
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Number |
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09/417899 |
Oct 1999 |
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Child |
09/594770 |
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