IP Library › Granted Patent US 10,174,665
Granted Patent B2
US 10,174,665 · App. 15/134,904 · Granted Jan 8, 2019

Active control flow system and method of cooling and providing active flow control

Inventors: Jean Thomassin (Ste-Julie, CA); David Meisels (Montreal, CA); Richard Ullyott (St-Bruno, CA)
Assignee: PRATT & WHITNEY CANADA CORP.
F01P11/10B64C21/04B64C21/06B64C21/08B64D27/10F01P3/20F01P5/10B64C2230/04
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Quick Facts
Patent No.
US 10,174,665
App. No.
15/134,904
Granted
Jan 8, 2019
Kind
B2
Abstract

A method of providing active flow control for an aircraft includes cooling a liquid coolant in a heat exchanger by circulating a cooling airflow through the heat exchanger, and providing fluid communication between the cooling airflow and a boundary layer flow of at least one flight control surface of the aircraft. The cooling airflow affects the boundary layer flow of the flight control surface(s) to provide active flow control. A method of cooling an engine core of an engine assembly includes circulating a cooling fluid through the engine core, and cooling the cooling fluid with a cooling airflow used to provide active flow control to a flight control surface of the aircraft. An active flow control system for an aircraft is also discussed.

Claims (18)

1. A method of providing active flow control for an aircraft, the method comprising:

cooling a component of the aircraft with a liquid coolant;

circulating the used liquid coolant through a heat exchanger;

cooling the liquid coolant in the heat exchanger by circulating a cooling airflow through the heat exchanger in heat exchange relationship with the liquid coolant;

providing fluid communication between the cooling airflow and a boundary layer flow of at least one flight control surface of the aircraft, the cooling airflow affecting the boundary layer flow of the at least one flight control surface to provide active flow control.

2. The method as defined in claim 1 , wherein providing the fluid communication between the cooling airflow and the boundary layer flow includes extracting the cooling airflow from the boundary layer flow, the fluid communication being provided upstream of the heat exchanger.

3. The method as defined in claim 2 , wherein the cooling airflow is extracted from the boundary layer flow through a plurality of openings defined in the at least one flight control surface.

4. The method as defined in claim 1 , wherein cooling the component of the aircraft with the liquid coolant includes circulating the liquid coolant through a housing of an internal combustion engine of an engine assembly of the aircraft.

5. The method as defined in claim 4 , wherein circulating the cooling airflow is performed by driving rotation of a fan with the engine assembly.

6. A method of cooling an engine core of an engine assembly of an aircraft, the method comprising:

circulating a cooling fluid through the engine core;

cooling the cooling fluid in a heat exchanger through heat exchange with a cooling airflow;

wherein the cooling airflow is used to provide active flow control to a surface of the aircraft.

7. The method as defined in claim 6 , wherein circulating the cooling fluid through the engine core includes circulating the cooling fluid through a housing of a rotary internal combustion engine.

8. The method as defined in claim 6 , wherein the cooling airflow is used to provide the active flow control by circulating the cooling airflow from a boundary layer region of a flight control surface to the heat exchanger.

9. The method as defined in claim 6 , further comprising circulating the cooling airflow through the heat exchanger and between the heat exchanger and the surface using a fan driven by the engine assembly.

10. The method as defined in claim 6 , wherein the cooling fluid is a liquid coolant.

11. The method as defined in claim 6 , further comprising circulating a compressed flow from a compressor of the engine assembly through the heat exchanger before being circulated to the engine core.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2017
From: THOMASSIN, JEAN; MEISELS, DAVID; ULLYOTT, RICHARD
To: PRATT & WHITNEY CANADA CORP.
Reel/Frame 041088/0382 →
Continuity (2)
Continuation In Part 15074487 · Mar 18, 2016
Related Publication 20170268409A1 · Sep 21, 2017
Cited By (1)
US 12,559,228