IP Library › Granted Patent US 11,913,382
Granted Patent B1
US 11,913,382 · App. 17/896,762 · Granted Feb 27, 2024

Variable restriction of a fuel circuit of a fuel nozzle

Inventors: Brandon P. Williams (Johnston, IA); Jason A. Ryon (Carlisle, IA); Todd Haugsjaahabink (Amherst, MA); Murtuza Lokhandwalla (South Windsor, CT); Charles E. Reuter (Granby, CT)
Assignee: Hamilton Sundstrand Corporation
F02C7/232F02C9/263F23R3/28F05D2220/323F05D2240/35
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Quick Facts
Patent No.
US 11,913,382
App. No.
17/896,762
Granted
Feb 27, 2024
Kind
B1
Abstract

A fuel injector for a turbine engine includes a fuel scheduling valve configured for regulation of fuel flow from a fuel inlet in response to fuel pressure received at the fuel inlet. Primary and secondary fuel circuits receive fuel from the scheduling valve, and an electrically-controlled valve is provided in fluid communication with the primary circuit, adapted and configured to actively control fuel through the primary circuit in response to a control signal.

Claims (41)

1. A fuel injector for a turbine engine comprising:

a housing having an internal enclosure for pressurized fluid;

a fuel inlet formed on the housing, permitting delivery of fuel supply to the fuel injector;

a scheduling valve disposed within the housing, configured for regulation of fuel flow from the fuel inlet in response to fuel pressure received at the fuel inlet;

a primary fuel circuit formed in the housing, receiving fuel from the scheduling valve;

a secondary fuel circuit formed in the housing, receiving fuel from the scheduling valve;

an electrically-controlled valve in fluid communication with the primary circuit adapted and configured to actively control fuel through the primary circuit in response to a control signal;

a fuel nozzle in fluid communication with and receiving fuel from the primary and secondary fuel circuits;

a primary outlet formed on the nozzle, in fluid communication with the primary fuel circuit;

a secondary outlet formed on the nozzle, in fluid communication with the secondary fuel circuit; and

a leak path in connection with the primary fuel circuit, whereby fuel from the scheduling valve passes through the primary fuel circuit at a minimum predetermined rate when dictated by the scheduling valve, regardless of the operation of the electrically-controlled valve.

2. The fuel injector of claim 1 , wherein the scheduling valve includes a valve spool, biased to a closed position by one or more biasing members, wherein the valve spool is configured to regulate flow from the inlet of the injector to each of the primary and secondary circuits, and wherein the valve spool includes a scheduling surface configured to vary flow area through the secondary circuit based on position of the valve spool within the scheduling valve.

3. The fuel injector of claim 1 , wherein the leak path is formed in the housing, parallel to a fluid path through the electrically-controlled valve.

4. The fuel injector of claim 1 , wherein the leak path is provided by the electrically-controlled valve.

5. The fuel injector of claim 4 , wherein the leak path is defined by a default valve position of the electrically-controlled valve.

6. The fuel injector of claim 1 , wherein activation of the electrically-controlled valve increases fluid flow through the primary fuel circuit.

7. The fuel injector of claim 1 , wherein the electrically-controlled valve is a binary valve.

8. The fuel injector of claim 1 , wherein the electrically-controlled valve is a modulating valve.

9. The fuel injector of claim 1 , wherein the electrically-controlled valve is a motorized valve.

10. A fuel supply system for a turbine engine, comprising:

a single fuel manifold adapted to receive and distribute a fuel supply to a plurality of points of the turbine engine; and

a plurality of fuel injectors distributed around a periphery of the engine, adapted and configured to receive fuel from the single fuel manifold, at least one of the fuel injectors having:

a housing having an internal enclosure for pressurized fluid;

a fuel inlet formed on the housing, permitting delivery of fuel supply from the single fuel manifold to the fuel injector;

a scheduling valve disposed within the housing, configured for regulation of fuel flow from the fuel inlet in response to fuel pressure received at the fuel inlet;

a primary fuel circuit formed in the housing, receiving fuel from the scheduling valve;

a secondary fuel circuit formed in the housing, receiving fuel from the scheduling valve;

an electrically-controlled valve in fluid communication with the primary circuit adapted and configured to actively control fuel through the primary circuit in response to a control signal;

a fuel nozzle in fluid communication with and receiving fuel from the primary and secondary fuel circuits;

a primary outlet formed on the nozzle, in fluid communication with the primary fuel circuit;

a secondary outlet formed on the nozzle, in fluid communication with the secondary fuel circuit; and

a leak path in connection with the primary fuel circuit, whereby fuel from the scheduling valve passes through the primary fuel circuit at a minimum predetermined rate when dictated by the scheduling valve, regardless of the operation of the electrically-controlled valve.

11. The fuel supply system of claim 10 , further comprising:

at least one passive fuel injector, receiving fuel from the single fuel manifold.

12. The fuel supply system of claim 11 , wherein the at least one passive fuel injector includes only one nozzle.

13. The fuel supply system of claim 10 , further comprising:

a metering valve adapted and configured to receive a fuel supply from a fuel pump, and output the fuel to the single manifold.

14. The fuel supply system of claim 10 , further comprising:

a controller electrically connected to the electrically-controlled valve on at least one fuel injector for individual control thereof.

15. The fuel supply system of claim 10 , further comprising:

a controller electrically connected to each electrically-controlled valve on a plurality of fuel injectors for ganged control thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2023
From: WILLIAMS, BRANDON P.; RYON, JASON A.; HAUGSJAAHABINK, TODD; LOKHANDWALLA, MURTUZA; REUTER, CHARLES E.
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 063029/0218 →
Cited By (1)
US 12,305,581