IP Library › Granted Patent US 11,092,078
Granted Patent B2
US 11,092,078 · App. 16/202,317 · Granted Aug 17, 2021

Tunable resonator

Inventors: Ninad Joshi (Brampton, CA); Sid-Ali Meslioui (Brossard, CA)
Assignee: PRATT & WHITNEY CANADA CORP.
F02C7/24F01N1/02F01N1/023F01N1/026F01N1/085F01N1/089F01N1/161F01N3/36F02C3/04F02C9/18F23M20/005F05B2260/96F05B2260/964F05D2220/32F05D2240/35F05D2260/96F05D2260/963F23R3/002F23R2900/00001F23R2900/00005F23R2900/00013F23R2900/00014
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Quick Facts
Patent No.
US 11,092,078
App. No.
16/202,317
Granted
Aug 17, 2021
Kind
B2
Abstract

The gas turbine engine includes a fluid system fluidly connecting at least two components of the gas turbine engine, and a tunable resonator in fluid flow communication with the fluid system. The tunable resonator has a resonating volume that varies as a function of a volume of an inflatable member located inside the tunable resonator. The inflatable member having a means for varying the volume of the inflatable member, to thereby tune the resonating volume to a selected frequency of pressure fluctuations or acoustic waves within the fluid system.

Claims (21)

1. A gas turbine engine comprising:

a fluid passage fluidly connecting at least two components of the gas turbine engine;

a tunable resonator, the tunable resonator being an in-line resonator, the tunable resonator comprising:

an inlet connected to the fluid passage and configured to receive fluid from an upstream portion of the fluid passage;

an outlet connected to the fluid passage and configured to discharge fluid to a downstream portion of the fluid passage;

a common central axis defined through the fluid passage, the inlet, and the outlet;

a resonating volume defined between the inlet and the outlet and along the common central axis, the inlet and the outlet being in fluid communication via the resonating volume, wherein an axial direction and a radial direction are defined relative to the common central axis, and wherein the resonating volume is configured to vary as a function of a volume of an inflatable member located inside the tunable resonator, the inflatable member extending axially and circumferentially relative to the common central axis, the inflatable member having a means for varying the volume by expanding or retracting the inflatable member, the inflatable member connected to a fluid source for varying the volume of the inflatable member, wherein the resonating volume is fluidly disconnected from the volume of the inflatable member, the inflatable member thereby configured to tune the resonating volume to a selected frequency of pressure fluctuations or acoustic waves within the fluid passage.

2. The gas turbine engine according to claim 1 , wherein the resonating volume varies inversely to the volume of the inflatable member.

3. The gas turbine engine according to claim 1 , wherein the inflatable member comprises two inflatable sub-members, the two inflatable sub-members each covering a portion of at least one inner wall of an outer casing of the tunable resonator.

4. The gas turbine engine according to claim 1 , wherein the means for varying the volume is a skin of the inflatable member, the skin having at least one gusset, the at least one gusset having two sections pivotable relative to one another along an edge joining the two sections, an angle between the two sections variable with a change of volume of the inflatable member.

5. The gas turbine engine according to claim 4 , wherein the skin has a plurality of gussets, the plurality of gussets defining an accordion section of the skin of the inflatable member.

6. The gas turbine engine according to claim 1 , wherein the inflatable member, in one or more inflated positions, extends axially and radially relative to the axial and radial directions of the tunable resonator, the inflatable member configured to expand or retract in both the radial direction and the axial direction.

7. The gas turbine engine according to claim 1 , wherein the inflatable member is located axially between the inlet and the outlet.

8. The gas turbine engine according to claim 1 , wherein the inflatable member extends fully circumferentially around the common central axis.

9. The gas turbine engine according to claim 1 , wherein the inflatable member extends or retracts in the axial direction and/or the radial direction relative to the common central axis.

10. The gas turbine engine according to claim 1 , wherein a first of the at least two components is a scoop in fluid flow communication with an annular by-pass conduit of the gas turbine engine.

11. The gas turbine engine according to claim 10 , wherein the inflatable member of the tunable resonator expands and retracts at least in the radial direction relative to the common central axis, the tunable resonator having a first configuration in which air can flow through the tunable resonator and a second configuration in which the inflatable member blocks air from flowing through the tunable resonator.

12. The gas turbine engine according to claim 10 , wherein a second of the at least two components is a case of a turbine section of the gas turbine engine.

13. The gas turbine engine according to claim 1 , wherein the inflatable member of the tunable resonator expands and retracts at least in a radial direction relative to the central axis.

14. The gas turbine engine according to claim 3 , wherein each of the two inflatable sub-members extending around a portion of a circumference around the central axis.

15. The gas turbine engine according to claim 14 , wherein the two inflatable sub-members encircle the resonator passage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2019
From: JOSHI, NINAD; MESLIOUI, SID-ALI
To: PRATT & WHITNEY CANADA CORP.
Reel/Frame 049929/0713 →
Continuity (2)
Division 15605051 · May 25, 2017
Related Publication 20190093565A1 · Mar 28, 2019
Cited By (1)
US 12,742,549