IP Library › Granted Patent US 8,075,254
Granted Patent B2
US 8,075,254 · App. 12/232,136 · Granted Dec 13, 2011

Developments relating to a rotor arrangement

Assignee: Rolls-Royce PLC
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Quick Facts
Patent No.
US 8,075,254
App. No.
12/232,136
Granted
Dec 13, 2011
Kind
B2
Abstract

A rotor arrangement has a rotor-section and a circumferential moveable seal around the rotor-section. The arrangement being such that, for a given rotation rate, the rotor-section is subject to an associated radial growth and a corresponding related axial displacement, relative to the seal. The rotor-section is provided with an axially-varying profile for off-setting said radial growth of the rotor-section, adjacent the circumferential seal, at said given rotation rate.

Claims (17)

1. A rotor arrangement comprising:

a rotor-section and a circumferential sealing-element around the rotor-section, wherein, in operation, rotation of the rotor-section is accompanied by radial growth of the rotor-section and by axial displacement of the rotor-section relative to the circumferential sealing-element, the rotor-section having a sealing surface for co-operation with the circumferential sealing-element,

a profile of the sealing surface being such that, at a given operational rotation speed of the rotor, the accompanying radial growth of the rotor-section adjacent the circumferential sealing-element is substantially compensated for by a corresponding axial displacement of the rotor-section.

2. A rotor arrangement according to claim 1 , wherein the rotor-section is operable at a range of rotation speeds, and said profile is configured such that, across the range of rotation speeds, the respective accompanying radial growth of the rotor-section adjacent the circumferential sealing-element is compensated for by the corresponding respective axial displacement of the rotor-section.

3. A rotor arrangement according to claim 1 , wherein the circumferential sealing-element is selected from a list of sealing elements including a brush-seal, a pressure balanced brush-seal and a leaf-seal.

4. A rotor arrangement according to claim 1 , wherein the circumferential seal-element is a floating seal.

5. A rotor arrangement according to claim 1 , wherein the circumferential seal-element is a floating seal and comprises an annular backing plate having an inner edge, the inner edge of the backing plate being abradable.

6. A rotor arrangement according to claim 1 , the circumferential seal-element is having an inner face configured for complementary mating engagement with the sealing surface.

7. A rotor arrangement according to claim 1 , wherein the rotor-section incorporates an abradable section.

8. A rotor arrangement according to claim 1 , wherein at least part of the sealing surface has a frusto-conical profile.

9. A rotor arrangement according to claim 8 , wherein the frusto-conical profile forms a transition section between regions of the sealing surface having different diameters.

10. A method of determining the profile of a rotor-section for use in a rotor arrangement including a circumferential sealing-element around the rotor-section which co-operates with a sealing surface provided on the rotor-section, wherein, in operation, rotation of the rotor-section is accompanied by radial growth of the rotor-section and by axial displacement of the rotor-section relative to the circumferential sealing-element, the method comprising:

estimating the accompanying radial growth and corresponding axial-displacement of the rotor-section at a given operational rotation speed; and

based on said estimate, determining a profile for the sealing-surface such that, at the given operational rotation speed of the rotor, the accompanying radial growth of the rotor-section adjacent the circumferential sealing-element is substantially compensated for by a corresponding axial displacement.

11. A method according to claim 10 , wherein

estimating the accompanying radial growth and corresponding axial displacement of the rotor-section comprises estimating the accompanying radial growth across a range of operational rotation speeds, as a function of the corresponding axial displacement of the rotor, and

determining a profile for the sealing-surface based on said estimate comprises determining a profile such that, across the range of operational speeds, the respective accompanying radial growth of the rotor-section adjacent the circumferential sealing-element will be substantially compensated for by the corresponding axial displacement.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2008
From: MORGAN, JONATHAN JAMES; TWIGGS, NIGEL JOHN; ENDERBY, CHRISTIAN HALE
To: ROLLS-ROYCE PLC
Reel/Frame 021608/0001 →
Priority Claims (1)
GB 0718431.0 · Sep 21, 2007 · national
Continuity (1)
Related Publication 20090081028A1 · Mar 26, 2009