IP Library › Granted Patent US 10,378,372
Granted Patent B2
US 10,378,372 · App. 15/215,726 · Granted Aug 13, 2019

Turbine with cooled turbine guide vanes

Inventors: Dimitrie Negulescu (Berlin, DE); Jens Taege (Schoeneiche, DE); Joana Negulescu (Berlin, DE); Knut Lehmann (Berlin, DE)
Assignee: Rolls-Royce Deutschland Ltd & Co KG
F01D9/041F01D5/081F01D5/187F01D5/188F01D25/12F01D25/24F05D2220/32F05D2260/20F05D2260/2212Y02T50/673Y02T50/676
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Quick Facts
Patent No.
US 10,378,372
App. No.
15/215,726
Granted
Aug 13, 2019
Kind
B2
Abstract

A turbine, in particular a high-pressure turbine, for an aircraft engine, with a housing at which turbine guide vanes are circumferentially arranged, wherein the turbine guide vanes have at least one interior space through which cooling air flows during operation of the turbine. At least one turbine guide vane has a cooling air passage in the area of an inner wall with respect to the radial direction of the turbine, via which the interior space of the turbine guide vane can be supplied with cooling air.

Claims (39)

1. A turbine for an aircraft engine comprising:

a housing;

a turbine guide vane arranged inside the housing, wherein the turbine guide vane includes an interior space through which cooling air flows during operation of the turbine;

the turbine guide vane including an inner wall;

an annular space adjacent to the inner wall of the turbine guide vane;

a cooling air passage, wherein the cooling air passage includes an air inlet and an air outlet through which the interior space of the turbine guide vane can be supplied with the cooling air;

wherein the air inlet is located at the inner wall of the turbine guide vane with respect to a radial direction of the turbine, connecting the cooling air passage to the annular space at the inner wall of the turbine guide vane;

wherein the air outlet is located in the interior space of the turbine guide vane to supply the turbine guide vane with the cooling air;

wherein the cooling air passage forms a continuously diffusing channel from the air inlet to the air outlet for diffusing the cooling air.

2. The turbine according to claim 1 , wherein the cooling air passage includes a center axis bent from the air inlet in a direction of the air outlet, and wherein the center axis extends in a radial direction of the turbine in an area of the air outlet.

3. The turbine according to claim 1 , wherein the cooling air passage is delimitated by two lateral surfaces in a circumferential direction of the turbine, with a distance between the two lateral surfaces increasing in the circumferential direction of the turbine from the air inlet in a direction of the air outlet.

4. The turbine according to claim 1 , wherein the air inlet is configured as a NACA duct.

5. The turbine according to claim 1 , wherein the air inlet includes an inlet lip.

6. The turbine according to claim 1 , wherein the air inlet forms a frontal intake.

7. The turbine according to claim 1 , and further comprising an insert for impingement cooling arranged in the interior space of the turbine guide vane.

8. The turbine according to claim 1 , further comprising:

a rotor device arranged upstream of the turbine guide vane;

a rotor blade including a blade root, wherein the rotor blade is attached to the rotor device at the blade root;

wherein the blade root includes a passage for guiding the cooling air into the annular space with a turbulence swirl flow in front of the cooling air passage.

9. The turbine according to claim 8 , wherein the blade root includes at least one additional supply channel for guiding the cooling air.

10. The turbine according to claim 1 , wherein:

the turbine guide vane includes a vane platform;

the inner wall is part of the vane platform; and

the cooling air passage is positioned in the vane platform.

11. A turbine for an aircraft engine, comprising:

a housing;

a turbine guide vane arranged inside the housing, wherein the turbine guide vane includes an interior space through which cooling air flows during operation of the turbine;

the turbine guide vane including an inner wall;

an annular space adjacent to the inner wall of the turbine guide vane;

a cooling air passage, wherein the cooling air passage includes an air inlet and an air outlet through which the interior space of the turbine guide vane can be supplied with the cooling air;

wherein the air inlet is located at the inner wall of the turbine guide vane with respect to a radial direction of the turbine, connecting the cooling air passage to the annular space at the inner wall of the turbine guide vane;

wherein the air outlet is located in the interior space of the turbine guide vane to supply the turbine guide vane with the cooling air;

a rotor device arranged upstream of the turbine guide vane;

a rotor blade including a blade root, wherein the rotor blade is attached to the rotor device at the blade root;

wherein the blade root includes a passage for guiding the cooling air into the annular space with a turbulence swirl flow in front of the cooling air passage;

wherein the blade root includes at least one additional supply channel for guiding the cooling air.

12. The turbine according to claim 11 , wherein the cooling air passage includes a center axis bent from the air inlet in a direction of the air outlet, and wherein the center axis extends in a radial direction of the turbine in the air outlet.

13. The turbine according to claim 11 , wherein the air inlet of the cooling air passage is configured as a NACA duct.

14. The turbine according to claim 11 , wherein the air inlet includes an inlet lip.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2016
From: NEGULESCU, DIMITRIE; TAEGE, JENS; NEGULESCU, JOANA; LEHMANN, KNUT
To: ROLLS-ROYCE DEUTSCHLAND LTD & CO KG
Reel/Frame 039423/0062 →
Priority Claims (1)
DE 10 2015 111 843 · Jul 21, 2015 · national
Continuity (1)
Related Publication 20170022836A1 · Jan 26, 2017
Cited By (1)
US 12,624,639