Claims
- 1. An engine, comprising:
a high pressure compressor; and water injection apparatus for injecting water into the gas flow at a location upstream from said high pressure compressor, said water injection apparatus comprising a plurality of nozzles arranged so that water injected into the gas flow by said nozzles results in substantially uniformly reducing the temperature of the gas flow at the high pressure compressor outlet.
- 2. An engine in accordance with claim 1 wherein said nozzles comprise long nozzles and short nozzles, said nozzles arranged in an alternating configuration so that one of said short nozzles is radially intermediate each pair of said long nozzles.
- 3. An engine in accordance with claim 1 wherein said water injection apparatus further comprises a water reservoir in flow communication with each said nozzle, and a water valve for controlling the flow of water from said reservoir to said nozzles.
- 4. An engine in accordance with claim 3 further comprising a water manifold in flow communication with and intermediate said water valve and said nozzles.
- 5. An engine in accordance with claim 1 further comprising a heating source for atomizing water supplied to said nozzles.
- 6. An engine in accordance with claim 5 wherein said high pressure compressor comprises a plurality of stages, and said source of heated air comprises at least one stage of said high pressure compressor.
- 7. An engine in accordance with claim 6 further comprising an air manifold intermediate said heated air source and said nozzles.
- 8. An engine in accordance with claim 7 wherein a flow pipe extends from said stage of said high pressure compressor to said air manifold, and said water injection apparatus further comprises a heat exchanger coupled to said flow pipe to reduce a temperature of air flowing through said pipe to said air manifold.
- 9. An engine in accordance with claim 1 further comprising a low pressure compressor and an intercooler in series flow relationship with said low pressure compressor and said high pressure compressor, said intercooler comprising an inlet coupled to said low pressure compressor outlet for receiving at least a portion of gas flowing from said low pressure compressor outlet, and an outlet coupled to said high pressure compressor inlet.
- 10. An engine in accordance with claim 1 further comprising a combustor located downstream of said high pressure compressor.
- 11. An engine in accordance with claim 10 further comprising a high pressure turbine and a low pressure turbine downstream of said combustor.
- 12. An engine in accordance with claim 11 wherein said high pressure compressor and said high pressure turbine are coupled via a first shaft, and said low pressure compressor and said low pressure turbine are coupled via a second shaft.
- 13. An engine in accordance with claim 1 wherein said low pressure compressor comprises at least five stages, and said high pressure compressor comprises at least fourteen stages.
- 14. An engine in accordance with claim 13 further comprising a high pressure turbine comprising at least two stages and a low pressure compressor comprising at least five stages.
- 15. An engine in accordance with claim 1 wherein said water injection apparatus further comprises a water reservoir in flow communication with each said nozzle, and a water valve for controlling the flow of water from said reservoir to said nozzles.
- 16. An engine in accordance with claim 1 further comprising a low pressure compressor and wherein said nozzles are positioned intermediate said low pressure compressor and said high pressure compressor.
- 17. An engine in accordance with claim 1 further comprising a low pressure compressor and wherein said nozzles are positioned upstream from said low pressure compressor.
- 18. An engine in accordance with claim 1 wherein said high pressure compressor comprises a plurality of stators, said stators electrically grounded.
- 19. An engine in accordance with claim 1 wherein each of said nozzles comprises an inner flow path and an outer flow path, said inner flow path coupled to a water reservoir, and said outer flow path coupled to a source of heated air.
- 20. An engine in accordance with claim 1 wherein water at said nozzle is under sufficient pressure to atomize.
- 21. An engine in accordance with claim 20 wherein water droplets from said nozzle have a diameter of about 20 microns.
- 22. An engine, comprising:
a low pressure compressor; a high pressure compressor downstream of said low pressure compressor; a combustor located downstream of said high pressure compressor; a high pressure turbine downstream of said combustor; a low pressure turbine downstream of said high pressure turbine; and water injection apparatus for injecting water into the gas flow at a location upstream from said high pressure compressor, said water injection apparatus comprising a plurality of nozzles, a water reservoir in flow communication with each said nozzle, and a water valve for controlling the flow of water from said reservoir to said nozzles, said nozzles arranged so that water injected into the gas flow by said nozzles results in substantially uniformly reducing the temperature of the gas flow at the high pressure compressor outlet.
- 23. An engine in accordance with claim 22 wherein said nozzles comprise long nozzles and short nozzles, said nozzles arranged in an alternating configuration so that one of said short nozzles is radially intermediate each pair of said long nozzles.
- 24. An engine in accordance with claim 22 wherein said high pressure compressor comprises a plurality of stages, and said water injection apparatus comprises a flow pipe extending from one of said stages of said high pressure compressor to supply heated air to said nozzles, said water injection apparatus further comprising a heat exchanger coupled to said flow pipe to reduce a temperature of air flowing through said pipe to said air manifold.
- 25. An engine in accordance with claim 22 further comprising an intercooler in series flow relationship with said low pressure compressor and said high pressure compressor, said intercooler comprising an inlet coupled to said low pressure compressor outlet for receiving at least a portion of gas flowing from said low pressure compressor outlet, and an outlet coupled to said high pressure compressor inlet.
- 26. An engine in accordance with claim 22 wherein said high pressure compressor and said high pressure turbine are coupled via a first shaft, and said low pressure compressor and said low pressure turbine are coupled via a second shaft.
- 27. An engine in accordance with claim 22 wherein said low pressure compressor comprises at least five stages, said high pressure compressor comprises at least fourteen stages, said high pressure turbine comprising at least two stages, and said low pressure compressor comprising at least five stages.
- 28. An engine in accordance with claim 22 wherein said nozzles are positioned intermediate said low pressure compressor and said high pressure compressor.
- 29. An engine in accordance with claim 22 wherein said nozzles are positioned upstream from said low pressure compressor.
- 30. An engine in accordance with claim 22 wherein said high pressure compressor comprises a plurality of stators, said stators electrically grounded.
- 31. An engine in accordance with claim 22 wherein each of said nozzles comprises an inner flow path and an outer flow path, said inner flow path coupled to a water reservoir, and said outer flow path coupled to a source of heated air.
- 32. An engine in accordance with claim 22 wherein water at said nozzle is under sufficient pressure to atomize.
- 33. An engine in accordance with claim 32 wherein water droplets from said nozzle have a diameter of about 20 microns.
- 34. Water injection apparatus for injecting water into the gas flow of an engine including a high pressure compressor, said apparatus comprising a plurality of nozzles configured to be secured to the engine upstream of the high pressure compressor so that water injected into the gas flow by said nozzles results in substantially uniformly reducing the temperature of the gas flow at the high pressure compressor outlet.
- 35. Water injection apparatus in accordance with claim 34 wherein said nozzles comprise long nozzles and short nozzles, said nozzles configured to be arranged in an alternating configuration so that one of said short nozzles is radially intermediate each pair of said long nozzles when secured to the engine.
- 36. Water injection apparatus in accordance with claim 1 further comprising a water reservoir for being in flow communication with each said nozzle, and a water valve for controlling the flow of water from said reservoir to said nozzles.
- 37. Water injection apparatus in accordance with claim 36 further comprising a water manifold configured to be in flow communication with and intermediate said water valve and said nozzles.
- 38. Water injection apparatus in accordance with claim 34 further comprising an air manifold and a flow pipe configured to extend from a stage of the high pressure compressor to said air manifold.
- 39. Water injection apparatus in accordance with claim 38 further comprising a heat exchanger configured to be coupled to said flow pipe to reduce a temperature of air flowing through said pipe to said air manifold.
- 40. Water injection apparatus further comprising an intercooler configured to be in series flow relationship with a low pressure compressor of the engine and the high pressure compressor.
- 41. Water injection apparatus in accordance with claim 34 wherein said nozzles are configured to be positioned intermediate a low pressure compressor of the engine and said high pressure compressor.
- 42. Water injection apparatus in accordance with claim 34 wherein said nozzles are configured to be positioned upstream from a low pressure compressor of the engine.
- 43. Water injection apparatus in accordance with claim 34 wherein each of said nozzles comprises an inner flow path and an outer flow path, said inner flow path configured to be coupled to a water reservoir, and said outer flow path configured to be coupled to a source of heated air.
- 44. A method for operating a gas turbine engine including a high pressure compressor and a water injection apparatus for injecting water into a gas flow of the engine upstream of the high pressure compressor, said method comprising the steps of:
operating the engine without injecting water into the gas flow of the engine; and once about full power is reached without injecting water into the gas flow, activating the water injection apparatus to inject water into the gas flow.
- 45. A method in accordance with claim 44 wherein the water injection apparatus includes a water valve, and wherein activating the water injection apparatus to inject water into the gas flow comprises the step of opening the water valve.
- 46. A method in accordance with claim 44 wherein the engine includes a low pressure compressor, and the water injection apparatus includes a plurality of nozzles, said nozzles positioned intermediate the low pressure compressor and the high pressure compressor.
- 47. A method in accordance with claim 44 wherein the engine includes a low pressure compressor, and the water injection apparatus includes a plurality of nozzles, said nozzles positioned upstream from the low pressure compressor.
- 48. A method in accordance with claim 44 wherein after activating the water injection apparatus to inject water into the gas flow, said method further comprises the step of increasing fuel flow to the engine combustor.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/094,094, filed Jul. 24, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60094094 |
Jul 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09354275 |
Jul 1999 |
US |
Child |
10074071 |
Feb 2002 |
US |