IP Library Granted Patent US 8,561,948
Granted Patent B2
US 8,561,948 · App. 11/604,296 · Granted Oct 22, 2013

Method for ensuring the safety of an aircraft flying horizontally at low speed

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Quick Facts
Patent No.
US 8,561,948
App. No.
11/604,296
Granted
Oct 22, 2013
Kind
B2
Abstract

A method for ensuring the safety of an aircraft flying horizontally at low speed includes an operation in which, when the flaps of the aircraft are disposed in a maximum extended position and are blown on by airscrews, the flaps are at least partially retracted, automatically, based on whether the thrust of the engines is at least equal to a predetermined lift value.

Claims (51)

1. A method to ensure the safety of an aircraft flying horizontally at low speed, comprising the steps of:

providing an aircraft comprised of:

a vertical tail group supporting a tilt-adjustable horizontal tail group that includes elevators,

an airscrew provided on an engine supported by a fixed wing of the aircraft,

extendable and retractable trailing-edge high-lift flaps on the wing of the aircraft, and

a controller configured to control extension and retraction of the high-lift flaps;

flying the aircraft horizontally at low speed;

orienting said high-lift flaps in an extended position during the horizontal flight of the aircraft;

blowing wind generated by said airscrew onto the wing of the aircraft and onto the high-lift flaps oriented in said extended position to generate a nose-down moment;

deflecting the tilt-adjustable horizontal tail group during the horizontal flight to generate a nose-up moment and counteract the nose-down moment; and

retracting the high-lift flaps by the controller during the horizontal flight, wherein the controller is configured to retract the high-lift flaps at a condition in which an engine thrust signal received by the controller becomes equal to or greater than a predetermined high value that corresponds to the engine thrust needed for the aircraft to take-off.

2. The method as claimed in claim 1 , wherein the retracting step is applied only when said aircraft is at an altitude greater than a threshold HS.

3. The method as claimed in claim 2 , wherein said threshold HS is approximately equal to 30 meters.

4. The method as claimed in claim 1 , wherein the high-lift flaps are retracted to an extent that prevents a stalling effect for the horizontal tail group in the event of a dive and subsequent flare of the aircraft.

5. The method as in claim 1 , wherein the tilt-adjustable horizontal tail group is located at a top end of the vertical tail group.

6. The method as in claim 1 , wherein the elevators are hinged to the adjustable horizontal tail group.

7. A method to ensure the safety of an aircraft flying horizontally at low speed, comprising the steps of:

providing an aircraft comprised of:

a vertical tail group supporting a tilt-adjustable horizontal tail group that includes elevators,

an airscrew provided on an engine supported by a fixed wing of the aircraft,

extendable and retractable trailing-edge high-lift flaps on the wing of the aircraft, and

a controller configured to control extension and retraction of the high-lift flaps;

flying the aircraft horizontally at low speed;

orienting said high-lift flaps in an extended position during the horizontal flight of the aircraft;

blowing wind generated by said airscrew onto the wing of the aircraft and onto the high-lift flaps oriented in said extended position to generate a nose-down moment;

deflecting the tilt-adjustable horizontal tail group during the horizontal flight to generate a nose-up moment and counteract the nose-down moment; and

retracting the high-lift flaps by the controller during the horizontal flight, wherein the controller is configured to retract the high-lift flaps at conditions corresponding to a first threshold condition in which engine thrust is less than the engine thrust needed for the aircraft to take-off and a second threshold condition in which a nose-down command is applied to the elevators.

8. The method as claimed in claim 7 , wherein said first threshold is approximately equal to 60% of the engine thrust needed for take-off.

9. The method as claimed in claim 7 , wherein said second threshold corresponds to approximately 60% of a total nose-down travel of a control column.

10. An aircraft comprising:

a vertical tail group supporting a tilt-adjustable horizontal tail group that includes elevators;

an airscrew provided on an engine supported by a fixed wing of the aircraft;

extendable and retractable trailing-edge high-lift flaps on the wing of the aircraft;

a sensor configured to sense an extended position of the flaps and deliver a signal that the flaps are in an extended position; and

a controller for controlling the extension and retraction of the flaps, wherein the controller is configured to receive the signal sent from the sensor and an engine thrust signal from a gas lever, and controls the high-lift flaps to retract from the extended position at conditions in which:

the aircraft is flying horizontally,

the high-lift flaps are oriented in the extended position during the horizontal flight,

wind generated by the airscrew is blown onto the wing of the aircraft and onto the high-lift flaps oriented in the extended position during the horizontal flight to generate a nose-down moment,

the tilt-adjustable horizontal tail group is deflected during the horizontal flight to generate a nose-up moment and counteract the nose-down moment, and

the controller receives the engine thrust signal, in which the signal is equal to or greater than a predetermined value corresponding to the engine thrust needed for the aircraft to take-off.

11. An aircraft comprising:

a vertical tail group supporting a tilt-adjustable horizontal tail group that includes elevators;

an airscrew provided on an engine supported by a fixed wing of the aircraft;

extendable and retractable trailing-edge high-lift flaps on the wing of the aircraft;

a sensor configured to sense an extended position of the flaps and deliver a signal that the flaps are in the extended position; and

a controller for controlling the extension and retraction of the flaps, wherein the controller is configured to receive an engine thrust signal from an on-board computer, and controls the high-lift flaps to retract from the extended position at conditions in which:

the aircraft is flying horizontally,

the high-lift flaps are oriented in the extended position during the horizontal flight,

wind generated by the airscrew is blown onto the wing of the aircraft and onto the high-lift flaps oriented in the extended position during the horizontal flight to generate a nose-down moment,

the tilt-adjustable horizontal tail group is deflected during the horizontal flight to generate a nose-up moment and counteract the nose-down moment, and

the controller receives the thrust signal at a predetermined value corresponding to a first threshold condition in which the engine thrust is less than the engine thrust needed for the aircraft to take-off and a second threshold based on a nose-down command being applied to the elevators.

Assignments (2)
MERGER Recorded May 18, 2011
From: AIRBUS FRANCE
To: AIRBUS OPERATIONS SAS
Reel/Frame 026298/0269 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2006
From: CHARDON, STEPHANE
To: AIRBUS FRANCE
Reel/Frame 018638/0385 →