Claims
- 1. An air moving assembly operable to generate a flow of air comprising:
an air moving device; and a stator; wherein said stator is operable to at least reduce one expansion or one contraction of airflow passing through said assembly.
- 2. The assembly of claim 1 wherein said stator is operable to at least reduce one expansion and one contraction of airflow passing through said assembly.
- 3. The assembly of claim 2 wherein said stator is operable to eliminate one expansion and one contraction of airflow passing through said assembly.
- 4. The assembly of claim 1 wherein the annular area of a surface of said stator matches the annular area of a surface of said air moving device.
- 5. The assembly of claim 4 wherein the annular area of another surface of said stator matches the annular area of a surface of another component of said air moving assembly.
- 6. The assembly of claim 5 wherein said annular area of said surface of said air moving device is different from said annular area of said surface of said another component of said air moving assembly.
- 7. The assembly of claim 1 wherein said assembly further includes at least another air moving device.
- 8. The assembly of claim 1 wherein said stator is further operable to alter the rotational direction of swirl for airflow passing through said stator.
- 9. The assembly of claim 1 wherein said stator is further operable to impart swirl having a rotational direction opposite to that of a direction of rotation of an impeller of said air moving device.
- 10. The assembly of claim 1 wherein said stator includes one or more curved blades.
- 11. The assembly of claim 1 wherein said stator includes more blades than said air moving device.
- 12. The assembly of claim 1 wherein said stator is part of a fingerguard of said air moving device.
- 13. The assembly of claim 1 wherein said assembly is incorporated into an electronic device.
- 14. An air moving device operable to generate a flow of air, said device comprising:
a strut assembly; a first air moving assembly coupled to said strut assembly; and a second air moving assembly coupled to said strut assembly; wherein said strut assembly includes a stator, said stator being operable to at least reduce one expansion or one contraction of airflow passing through said air moving device.
- 15. The device of claim 14 wherein said stator is operable to at least reduce one expansion and one contraction of airflow passing through said air moving device.
- 16. The device of claim 14 wherein said first air moving assembly and said second air moving assembly are synchronized such that acoustic beat frequencies are limited.
- 17. The device of claim 14 wherein said device is operable such that when said first air moving assembly fails, the rotational velocity of an impeller of said second air moving assembly is increased.
- 18. A stator for improving the performance of an air moving system, said stator comprising:
a frame; and at least one blade coupled to said frame; wherein said stator is operable to at least reduce one expansion or one contraction of airflow passing through said cooling system.
- 19. The stator of claim 18 wherein said stator is further operable to convert a tube axial fan to a vane axial fan.
- 20. The stator of claim 18 wherein said stator is a drop-in module operable to be inserted between two air moving devices of an N+1 series configuration.
RELATED APPLICATION
[0001] This application is related to U.S. patent application Ser. No. 09/867,194 entitled, “ENHANCED PERFORMANCE FAN WITH THE USE OF WINGLETS” filed May 29, 2001, the disclosure of which is hereby incorporated by reference herein.