IP Library › Granted Patent US 10,227,931
Granted Patent B2
US 10,227,931 · App. 15/075,919 · Granted Mar 12, 2019

Variable inlet guide vane scheduling

Inventor: Mark T Stockwell (Derby, GB)
Assignee: ROLLS-ROYCE plc
F02C9/20B64C11/305F02C7/042F02C7/262F02C9/54F04D27/0246F04D29/321F04D29/542F04D29/563F05D2220/323F05D2220/3216F05D2240/12F05D2260/85F05D2270/092F05D2270/30F05D2270/304
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Quick Facts
Patent No.
US 10,227,931
App. No.
15/075,919
Granted
Mar 12, 2019
Kind
B2
Abstract

There is disclosed an aero gas turbine engine comprising a compressor and an array of variable inlet guide vanes for the compressor. The angle of the variable inlet guide vanes is controlled by scheduling, the scheduling comprising a first component invoked for engine ground start and a second component invoked for engine in-flight windmill start at least under particular flight conditions. The angle of the variable inlet guide vanes required by at least a portion of the second component is greater than the angle of the variable inlet guide vanes required by at least a portion of the first component.

Claims (20)

1. An aero gas turbine engine comprising a compressor and an array of variable inlet guide vanes upstream of the compressor,

a controller configured to control an angle of the variable inlet guide vanes in accordance with a scheduling,

the scheduling comprising a first component invoked for engine ground start, and

a second component invoked for engine in-flight windmill start, and where the angle of the variable inlet guide vanes required by at least a portion of the second component is greater than the angle of the variable inlet guide vanes required by at least a portion of the first component.

2. An aero gas turbine engine according to claim 1 where the compressor is provided on a spool and each of the first and second components are invoked over a range of spool speeds for the spool encompassing ignition and initial acceleration of the engine.

3. An aero gas turbine engine according to claim 2 where the first and second components are invoked over a range of common spool speeds.

4. An aero gas turbine engine according to claim 3 where the variable inlet guide vane angle required by the second component is consistently at least as high as the angle required by the first component over corresponding spool speeds.

5. An aero gas turbine engine according to claim 3 where the second component requires an increased variable inlet guide vane angle by comparison with the first component at spool speeds below a particular spool speed.

6. An aero gas turbine engine according to claim 3 where the first and second components require the same variable inlet guide vane angle at spool speeds above a particular spool speed.

7. An aero gas turbine engine according to claim 2 where the scheduling further comprises a nominal component invoked after whichever of the first and second components is invoked for engine start.

8. An aero gas turbine engine according to claim 7 where the nominal component comprises variable inlet guide vane scheduling for spool speeds corresponding to spool speeds over which the first and/or second components are operational when invoked.

9. An aero gas turbine engine according to claim 7 where the first component requires a lower variable inlet guide vane angle than the nominal component over corresponding spool speeds.

10. An aero gas turbine engine according to claim 7 where the variable inlet guide vane angle required by the second component is the same as the angle required by the nominal component over part of the portion of the second component that requires a greater angle than the first component.

11. An aero gas turbine engine according to claim 1 where the spool of the compressor drives a fuel pump of the engine.

12. An aero gas turbine engine according to claim 1 where the compressor is an intermediate pressure compressor.

13. A method of scheduling control of an angle of an array of variable inlet guide vanes upstream of a compressor of an aero gas turbine engine, the method comprising:

providing a first component invoked for engine ground start; and

providing a second component invoked for engine in-flight windmill start, wherein the angle of the plurality of variable inlet guide vanes required by at least a portion of the second component is greater than the angle of the plurality of variable inlet guide vanes required by at least a portion of the first component.

14. A method of conducting an in-flight start procedure for a windmilling aero gas turbine engine comprising scheduling variable inlet guide vanes upstream of a compressor over at least part of the start procedure for the compressor of the engine such that the angle of the variable inlet guide vanes is greater than an angle of the variable inlet guide vanes scheduled over at least part of an engine ground start procedure.

15. A method according to claim 14 invoked only when the altitude of an aircraft powered by the engine is below a pre-determined level.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2016
From: STOCKWELL, MARK T
To: ROLLS-ROYCE PLC
Reel/Frame 038052/0961 →
Priority Claims (1)
GB 1505113.9 · Mar 26, 2015 · national
Continuity (1)
Related Publication 20160281611A1 · Sep 29, 2016
Cited By (2)
US 12,404,873 US 12,516,678