IP Library › Granted Patent US 9,670,842
Granted Patent B2
US 9,670,842 · App. 13/006,878 · Granted Jun 6, 2017

Bleed valve module with position feedback and cooling shroud

Inventors: Donald E. Army (Enfield, CT); Gregory L. DeFrancesco (Simsbury, CT); John M. Malijanian (Farmington, CT)
Assignee: Hamilton Sundstrand Corporation
F02C6/08B64D13/08Y02T50/56Y10T137/0402Y10T137/87193
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Quick Facts
Patent No.
US 9,670,842
App. No.
13/006,878
Granted
Jun 6, 2017
Kind
B2
Abstract

A bleed valve control system for mounting to a support structure adjacent to a fan air plenum within an aircraft includes a bleed valve module, a pneumatic valve controller, and a fan air duct. The bleed valve module includes a pipe, a plurality of bleed valves connected to the pipe, and a plurality of pneumatic actuators connected to the bleed valves. The pneumatic valve controller includes a plurality of electrical control elements and a cooling shroud. The cooling shroud is attached to the pipe and at least partially surrounds the plurality of electrical control elements. The fan air duct connects the cooling shroud to the fan air plenum such that fan air flows through the cooling shroud to cool the plurality of electrical control elements.

Claims (56)

1. A bleed valve control system for use in a gas turbine engine having a fan and a fan air flow path that directs fan air flow and includes a fan air plenum, the bleed valve control system comprising:

a fan air duct that receives and directs fan air flow and is connected to the fan air plenum;

a bleed valve module comprising:

a bleed air pipe for containing a flow of bleed air from a compressor, the bleed air pipe comprising a plurality of inlets and an outlet;

a first bleed valve connected to the bleed air pipe between a first inlet and the outlet; and

a first pneumatic actuator connected to the first bleed valve;

a cooling shroud mounted on the bleed air pipe, the cooling shroud comprising:

a cooling air inlet connected to the fan air duct; and

a cooling air outlet in fluid communication with the cooling air inlet and the outlet of the bleed air pipe; and

a pneumatic valve controller located within the cooling shroud, the pneumatic valve controller comprising:

a first bleed air pressure sensor connected to the bleed air pipe between the first bleed valve and the outlet of the bleed air pipe; and

a first torque motor connected to the first pneumatic actuator by a first pneumatic control line;

wherein the cooling air inlet and the cooling air outlet of the cooling shroud are positioned to direct a cooling flow of fan air over the pneumatic valve controller.

2. The bleed valve control system of claim 1 , wherein the bleed air pipe outlet is in fluid communication with a pre-cooler to provide bleed air to be cooled by the pre-cooler, the pre-cooler being cooled by air flowing through the fan air plenum.

3. The bleed valve control system of claim 1 , wherein the pneumatic valve controller further comprises:

a first valve position sensor connected to the first bleed valve.

4. The bleed valve control system of claim 1 , wherein the bleed valve module further comprises:

a second bleed valve connected to the bleed air pipe between the outlet of the bleed air pipe and the first bleed valve; and

a third bleed valve connected to the bleed air pipe between the second bleed valve and the outlet of the bleed air pipe.

5. The bleed valve control system of claim 4 , wherein the pneumatic valve controller further comprises:

a second bleed air pressure sensor connected to the bleed air pipe between the second bleed valve and the third bleed valve.

6. The bleed valve control system of claim 4 , wherein the pneumatic valve controller further comprises:

a second valve position sensor connected to the second bleed valve; and

a third valve position sensor connected to the third bleed valve.

7. The bleed valve control system of claim 4 , wherein the bleed valve module further comprises:

a second pneumatic actuator connected to the second bleed valve to actuate the second bleed valve; and

a third pneumatic actuator connected to the third bleed valve to actuate the third bleed valve.

8. The bleed valve control system of claim 7 , wherein the pneumatic valve controller further comprises:

a second torque motor connected to the second pneumatic actuator by a second pneumatic control line; and

a third torque motor connected to the third pneumatic actuator by a third pneumatic control line.

9. A bleed valve control system for use in a gas turbine engine having a fan and a fan air flow path that directs fan air flow and includes a fan air plenum, the bleed valve control system comprising:

a fan air duct that receives and directs fan air flow and is connected to the fan air plenum;

a bleed valve module comprising:

a bleed air pipe for containing a flow of bleed air from a compressor, the pipe comprising a plurality of inlets and an outlet;

a first bleed valve connected to the bleed air pipe between a first inlet and the outlet of the bleed air pipe; and

a first pneumatic actuator connected to the first bleed valve;

a cooling shroud mounted on the bleed air pipe, the cooling shroud comprising:

a cooling air inlet connected to the fan air duct; and

a cooling air outlet in fluid communication with the cooling air inlet and the outlet of the bleed air pipe; and

a pneumatic valve controller located within the cooling shroud, the pneumatic valve controller comprising:

a first torque motor connected to the first pneumatic actuator by a first pneumatic control line; and

a first valve position sensor connected to the first bleed valve;

wherein the cooling air inlet and the cooling air outlet of the cooling shroud are positioned to direct a cooling flow of fan air over the pneumatic valve controller.

10. The bleed valve control system of claim 9 , wherein the outlet of the bleed air pipe is in fluid communication with a pre-cooler to provide bleed air to be cooled by the pre-cooler, the pre-cooler being cooled by air flowing through the fan air plenum.

11. The bleed valve control system of claim 9 , wherein the bleed valve module further comprises:

a second bleed valve connected to the bleed air pipe between the outlet of the bleed air pipe and the first bleed valve; and

a third bleed valve connected to the bleed air pipe between the second bleed valve and the outlet of the bleed air pipe.

12. The bleed valve control system of claim 11 , wherein the pneumatic valve controller further comprises:

a second valve position sensor connected to the second bleed valve; and

a third valve position sensor connected to the third bleed valve.

13. The bleed valve control system of claim 11 , wherein the bleed valve module further comprises:

a second pneumatic actuator connected to the second bleed valve; and

a third pneumatic actuator connected to the third bleed valve.

14. The bleed valve control system of claim 13 , wherein the pneumatic valve controller further comprises:

a second torque motor connected to the second pneumatic actuator by a second pneumatic control line; and

a third torque motor connected to the third pneumatic actuator by a third pneumatic control line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2011
From: ARMY, DONALD E.; DEFRANCESCO, GREGORY L.; MALJANIAN, JOHN M.
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 025640/0980 →
Continuity (1)
Related Publication 20120180886A1 · Jul 19, 2012