IP Library Patent Application 13356940
Patent Application
App. No. 13/356,940

GEARED TURBOMACHINE FAN AND COMPRESSOR ROTATION

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Quick Facts
Patent No.
US None
App. No.
13/356,940
Abstract

A high-bypass ratio geared turbomachine comprises a compressor section of a high-bypass ratio geared turbomachine. The compressor section provides at least a low-pressure compressor and a high-pressure compressor, wherein a rotor of the low-pressure compressor rotates together with a rotor of a fan.

Claims (25)

1 . A high-bypass ratio geared turbomachine, comprising:

a compressor section of a high-bypass ratio geared turbomachine, the compressor section providing at least a low-pressure compressor and a high-pressure compressor, wherein a rotor of the low-pressure compressor rotates together with a rotor of a fan.

2 . The high-bypass ratio geared turbomachine of claim 1 , wherein the rotor of the low pressure compressor and the rotor of the fan rotate at the same speed and in the same direction.

3 . The high-bypass ratio geared turbomachine of claim 1 , wherein the high-bypass ratio geared turbomachine has a fan bypass ratio greater than about 8.

4 . The high-bypass ratio geared turbomachine of claim 1 , wherein the high-bypass ratio geared turbomachine has an overall compression ratio greater than about 40.

5 . The high-bypass ratio geared turbomachine of claim 1 , wherein the high-pressure compressor has a pressure ratio greater than about 20.

6 . The high-bypass ratio geared turbomachine of claim 1 , wherein the fan includes a shaft that is rotatably supported by a plurality of tapered bearings.

7 . The high-bypass ratio geared turbomachine of claim 1 , including a turbine shaft that rotates a geared architecture to rotate the rotor of the low-pressure compressor and the rotor of the fan.

8 . The high-bypass ratio geared turbomachine of claim 7 , wherein at least one thrust bearing rotatably supports the turbine shaft, and the at least one thrust bearing is located axially between the geared architecture and a turbine secured to the turbine shaft.

9 . The high-bypass ratio geared turbomachine of claim 8 , wherein the at least one thrust bearing is a bi-directional tapered bearing.

10 . The high-bypass ratio geared turbomachine of claim 7 , wherein the shaft is a low-pressure turbine shaft.

11 . The high-bypass ratio geared turbomachine of claim 7 , wherein the geared architecture is a planetary geared architecture.

12 . A high-bypass ratio turbomachine, comprising:

a fan rotor that rotates together with an compressor rotor at a first speed in a turbomachine having a high-bypass ratio, wherein the fan rotor and the compressor rotor are driven by a shaft that rotates at a second speed different than the first speed.

13 . The high-bypass ratio turbomachine of claim 12 , wherein the shaft rotates a geared architecture to rotate the fan rotor and the compressor rotor.

14 . The high-bypass ratio turbomachine of claim 12 , wherein the compressor rotor is axially forward of a fan frame extending radially across a fan bypass flow path.

15 . The high-bypass ratio turbomachine of claim 12 , wherein the fan rotor and the compressor rotor rotate at the same speed.

16 . The high-bypass ratio turbomachine of claim 12 , including a high-pressure turbine, a combustor section, and a low-pressure turbine arranged axially sequentially within the geared turbomachine.

17 . The high-bypass ratio turbomachine of claim 12 , wherein exclusively axial compressors provide compression in the geared turbomachine.

18 . The high-bypass ratio turbomachine of claim 12 , wherein the compressor is a low-pressure compressor.

19 . A method of operating a high-bypass ratio turbomachine, comprising:

rotating a geared architecture with a first shaft;

rotating a second shaft with the geared architecture; and

rotating a fan rotor and a compressor rotor with the second shaft.

20 . The method of claim 19 , wherein the turbomachine has a fan bypass ratio greater than 8.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2012
From: SHERIDAN, WILLIAM G.; MCCUNE, MICHAEL E.
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 027583/0665 →