IP Library › Granted Patent US 10,450,879
Granted Patent B2
US 10,450,879 · App. 15/341,941 · Granted Oct 22, 2019

Gas turbine engine

Inventors: Luca Di Mare (London, GB); Fernando Barbarossa (London, GB); Max E. Rife (London, GB)
Assignee: ROLLS-ROYCE plc
F01D9/041F01D5/148F05D2220/32F05D2250/38F05D2260/961Y02T50/673
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Quick Facts
Patent No.
US 10,450,879
App. No.
15/341,941
Granted
Oct 22, 2019
Kind
B2
Abstract

A gas turbine engine includes a circumferential row of vanes directly upstream of an asymmetric gas flow path. At a given spanwise position, a tangential and axial position of the outer guide vanes varies along the circumferential row of vanes. One or more of the vanes are leant such that the tangential and axial position of one or more vanes of the circumferential row of vanes varies in a spanwise direction.

Claims (18)

1. A gas turbine engine comprising:

a circumferential row of vanes directly upstream of an asymmetric gas flow path;

wherein at a given spanwise position a tangential and axial position of the vanes varies along the circumferential row of vanes, and

wherein each vane of the circumferential row of vanes is leant such that the tangential and axial position of each respective vane varies in a spanwise direction within a span of the vane.

2. The gas turbine engine according to claim 1 , wherein the tangential position is varied such that a pitch between vanes is defined along the circumferential row of vanes using a harmonic function that oscillates finitely.

3. The gas turbine engine according to claim 1 , wherein the axial position of each vane is defined along the circumferential row of vanes using a harmonic function that oscillates finitely.

4. The gas turbine engine according to claim 1 , wherein the vanes are twisted to vary the stagger of each vane in a spanwise direction.

5. The gas turbine engine according to claim 1 , wherein each vane has a camberline defined at least at one spanwise position by an orthogonal polynomial.

6. The gas turbine engine according to claim 1 , wherein the stagger angle and/or camber of each vane of the circumferential row of vanes varies along the circumferential row of vanes.

7. The gas turbine engine according to claim 1 , wherein the vanes are leant and twisted so as to vary the tangential position, the axial position, the stagger, and/or the camber of each vane in a spanwise direction.

8. The gas turbine engine according to claim 1 , wherein the vanes are outlet guide vanes and the asymmetric gas flow path is defined by a bypass duct and at least one pylon of the gas turbine engine.

9. The gas turbine engine according to claim 8 , wherein one or more vanes of the circumferential row of vanes positioned circumferentially to one side of the pylon are under-cambered compared to vanes positioned circumferentially to the opposite side of the pylon.

10. The gas turbine engine according to claim 8 , wherein one or more vanes of the circumferential row of vanes positioned circumferentially to one side of the pylon have a reduced stagger angle compared to vanes positioned circumferentially to the opposite side of the pylon.

11. A gas turbine engine comprising:

a circumferential row of vanes directly upstream of an asymmetric gas flow path;

wherein each of the vanes is leant and twisted so as to have a variation in tangential position, axial position, and stagger angle in a spanwise direction within a span of each respective vane.

12. The gas turbine engine according to claim 1 , wherein the tangential position is varied such that a pitch between vanes is defined along the circumferential row of vanes using a harmonic function that oscillates finitely.

13. The gas turbine engine according to claim 1 , wherein the axial position is defined along the circumferential row of vanes using a harmonic function that oscillates finitely.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2016
From: DI MARE, LUCA; BARBAROSSA, FERNANDO; RIFE, MAX E.
To: ROLLS-ROYCE PLC
Reel/Frame 040202/0114 →
Priority Claims (1)
GB 1520623.8 · Nov 23, 2015 · national
Continuity (1)
Related Publication 20170145840A1 · May 25, 2017
Cited By (2)
US 12,312,966 US 12,509,988