Method for setting a gear ratio of a fan drive gear system of a gas turbine engine
Abstract
A gas turbine engine includes a fan with a plurality of fan blades rotatable about an engine centerline longitudinal axis. The fan has a low corrected fan tip speed less than 1400 ft/sec. A bypass ratio is greater than 13 and less than 20. A fan pressure ratio less than 1.48. A speed reduction device comprises a gear system with a gear ratio of at least 2.6 and less than or equal to 4.1. A low and high pressure turbine is in communication with a first and second shaft, respectively. The low pressure turbine includes at least three stages and no more than four stages. The high pressure turbine includes two stages. The gear ratio is configured such that in operation the fan blade does not exceed a fan tip speed boundary condition or a second stress level. A low pressure turbine rotor does not exceed a first stress level.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A gas turbine engine comprising:
an engine centerline longitudinal axis; a fan section including a fan with a plurality of fan blades and rotatable about the engine centerline longitudinal axis, wherein the fan has a low corrected fan tip speed less than 1400 ft/sec, wherein the low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(Tram ° R)/(518.7° R)] 0.5 , where T represents the ambient temperature in degrees Rankine; a bypass ratio greater than 13 and less than 20; a fan pressure ratio less than 1.48, wherein the fan pressure ratio is measured across a fan blade alone; a speed reduction device comprising a gear system with a gear ratio of at least 2.6 and less than or equal to 4.1; a plurality of bearing systems; a low pressure turbine in communication with a first shaft; and a high pressure turbine in communication a second shaft; wherein the first shaft and second shaft are concentric and mounted via at least one of the plurality of bearing systems for rotation about the engine centerline longitudinal axis, and the first shaft is in communication with the fan through the speed reduction device; wherein the low pressure turbine includes at least three stages and no more than four stages; wherein the high pressure turbine includes two stages; and wherein the low pressure turbine includes at least one rotor constrained by a first stress level, at least one of the plurality of fan blades of the fan constrained by a second stress level and having a fan tip speed boundary condition, and the gear ratio is configured such that in operation the fan blade does not exceed the fan tip speed boundary condition or the second stress level, and the low pressure turbine rotor does not exceed the first stress level.
2 . The gas turbine engine of claim 1 , wherein the low pressure turbine includes four stages.
3 . The gas turbine engine of claim 2 , wherein the gear system is a star gear system with a ring gear, and a sun gear, wherein the gear ratio is determined by measuring a diameter of the ring gear and dividing that diameter by the diameter of the sun gear.
4 . The gas turbine engine of claim 2 , wherein the fan pressure ratio is less than 1.38.
5 . The gas turbine engine of claim 3 , wherein the fan pressure ratio is less than 1.38.
6 . A gas turbine engine comprising:
an engine centerline longitudinal axis; a fan section including a fan with a plurality of fan blades and rotatable about the engine centerline longitudinal axis, wherein the fan has a low corrected fan tip speed less than 1400 ft/sec, wherein the low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(Tram ° R)/(518.7° R)] 0.5 , where T represents the ambient temperature in degrees Rankine; a bypass ratio greater than 11.0 and less than 22.0; a fan pressure ratio less than 1.38, wherein the fan pressure ratio is measured across a fan blade alone; a speed reduction device comprising a gear system; a plurality of bearing systems; a low pressure turbine in communication with a first shaft; and a high pressure turbine in communication with a second shaft; wherein the first shaft and second shaft are concentric and mounted via at least one of the plurality of bearing systems for rotation about the engine centerline longitudinal axis, and the first shaft is in communication with the fan through the speed reduction device; wherein the high pressure turbine includes two stages; and wherein the low pressure turbine includes at least one rotor constrained by a first stress level, at least one of the plurality of fan blades of the fan constrained by a second stress level and having a fan tip speed boundary condition, and the gear system is configured such that in operation the fan blade does not exceed the fan tip speed boundary condition or the second stress level, and the low pressure turbine rotor does not exceed the first stress level.
7 . The gas turbine engine of claim 6 , wherein the low pressure turbine includes five stages.
8 . The gas turbine engine of claim 6 , further comprising a low pressure compressor including three stages, wherein the low pressure turbine drives the low pressure compressor.
9 . The gas turbine engine of claim 6 , wherein the low pressure turbine includes at least three stages and no more than four stages.
10 . The gas turbine engine of claim 6 , wherein the speed reduction device includes a gear ratio less than or equal to 4.1.
11 . The gas turbine engine of claim 10 , wherein the gear ratio is greater than or equal to 2.6.
12 . The gas turbine engine of claim 9 , wherein the low pressure turbine includes four stages.
13 . The gas turbine engine of claim 12 , further comprising a mid-turbine frame arranged between the high pressure turbine and the low pressure turbine, wherein the mid-turbine frame supports at least one bearing system.
14 . The gas turbine engine of claim 13 , wherein the mid-turbine frame includes one or more airfoils that extend in a flow path.
15 . The gas turbine engine of claim 12 , further comprising a low pressure compressor including three stages, wherein the low pressure turbine drives the low pressure compressor.
16 . The gas turbine engine of claim 15 , further comprising a high pressure compressor including eight stages, wherein the high pressure turbine drives the high pressure compressor.
17 . The gas turbine engine of claim 12 , the star gear system further comprising five intermediate gears.
18 . The gas turbine engine of claim 17 , wherein the gear system is a star gear system with a ring gear, a sun gear, and a star gear ratio, and the star gear ratio is determined by measuring a diameter of the ring gear and dividing that diameter by the diameter of the sun gear.
19 . The gas turbine engine of claim 17 , further comprising a mid-turbine frame arranged between the high pressure turbine and the low pressure turbine, wherein the mid-turbine frame supports at least one bearing system and includes one or more airfoils.
20 . A gas turbine engine comprising:
an engine centerline longitudinal axis; a fan section including a fan with a plurality of fan blades and rotatable about the engine centerline longitudinal axis; a low corrected fan tip speed less than 1400 ft/sec, wherein the low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(Tram ° R)/(518.7° R)] 0.5 , where T represents the ambient temperature in degrees Rankine; a bypass ratio of greater than 11.0; a speed reduction device comprising a gear system; a plurality of bearing systems; a low pressure turbine in communication with a first shaft and includes a pressure ratio greater than about 5:1, the low pressure turbine includes an inlet having an inlet pressure, and an outlet having an outlet pressure, and the pressure ratio of the low pressure turbine is a ratio of the inlet pressure to the outlet pressure; and a high pressure turbine in communication with a second shaft; wherein the first shaft and second shaft are concentric and mounted via at least one of the plurality of bearing systems for rotation about the engine centerline longitudinal axis, and the first shaft is in communication with the fan through the speed reduction device; wherein the low pressure turbine includes at least three stages and no more than four stages; and wherein the low pressure turbine includes at least one rotor constrained by a first stress level, at least one of the plurality of fan blades of the fan constrained by a second stress level and having a fan tip speed boundary condition, and the gear system is configured such that in operation the fan blade does not exceed the fan tip speed boundary condition or the second stress level, and the low pressure turbine rotor does not exceed the first stress level.
21 . The gas turbine engine of claim 20 , wherein the high pressure turbine includes two stages.
22 . The gas turbine engine of claim 21 , wherein the low pressure turbine includes three stages.
23 . The gas turbine engine of claim 21 , wherein the gear system has a gear ratio of less than or equal to 4.1.
24 . The gas turbine engine of claim 23 , wherein the gear reduction ratio is at least 2.6.
25 . The gas turbine engine of claim 24 , wherein the gear system is a star gear system with a ring gear, and a sun gear, wherein the gear ratio is determined by measuring a diameter of the ring gear and dividing that diameter by the diameter of the sun gear.
26 . The gas turbine engine of claim 24 , wherein the low pressure turbine includes four stages.
27 . A gas turbine engine comprising:
an engine centerline longitudinal axis; a fan section including a fan with a plurality of fan blades and rotatable about the engine centerline longitudinal axis; a low corrected fan tip speed less than 1400 ft/sec, wherein the low corrected fan tip speed is an actual fan tip speed at an ambient temperature divided by [(Tram ° R)/(518.7° R)] 0.5 , where T represents the ambient temperature in degrees Rankine; a bypass ratio greater than 11 and less than 22; a speed reduction device comprising a gear system with a gear ratio; a plurality of bearing systems; a low pressure turbine in communication with a first shaft; and a high pressure turbine in communication with a second shaft; wherein the first shaft and second shaft are concentric and mounted via at least one of the plurality of bearing systems for rotation about the engine centerline longitudinal axis, and the first shaft is in communication with the fan through the speed reduction device; wherein the low pressure turbine includes four stages; and wherein the low pressure turbine includes at least one rotor constrained by a first stress level, at least one of the plurality of fan blades of the fan constrained by a second stress level and having a fan tip speed boundary condition, and the gear ratio is configured such that in operation the fan blade does not exceed the fan tip speed boundary condition or the second stress level, and the low pressure turbine rotor does not exceed the first stress level.
28 . The gas turbine engine of claim 27 , wherein the high pressure turbine includes two stages.
29 . The gas turbine engine of claim 27 , wherein the gear reduction ratio is at least 2.6 and less than or equal to 4.1.
30 . The gas turbine engine of claim 29 , wherein the low pressure turbine has a pressure ratio greater than 5:1, the low pressure turbine includes an inlet having an inlet pressure, and an outlet having an outlet pressure, and the pressure ratio of the low pressure turbine is a ratio of the inlet pressure to the outlet pressure.Join the waitlist — get patent alerts
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