EP2139763B2

Deployable flap edge fence and method of operation

Abstract

A method and systems are disclosed for reducing fluid flow noise. The method and systems use a thermal mechanism to deploy a flap edge fence during landing and/or other operating conditions, and stow the flap edge fence during other operational conditions such as cruise. The flap edge fence is controlled passively by ambient temperature or actively by a controller based on temperature changes corresponding to various operating conditions.

EP2139763B2, drawing sheet 1
Sheet 1 of 6

Term

1.5 yearsleft in the term

Expires 3 April 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

12 claims: 2 independent, 10 dependent

  1. 1
    A system for reducing airflow noise for an aircraft having a wing main element (402), the system comprising:a flap (408) adapted to be coupled to the wing main element (402);a flap edge fence. (406) coupled to the flap (408);and a control mechanism for the flap edge fence (406), the control mechanism being configured to: deploy the flap edge fence (406) for a first set of flight conditions upon approach;and stow the flap edge fence (406) for a second set of flight conditions during cruise, the flap edge fence (406) being independently moveable with respect to said flap and passively reconfigurable using the ambient temperature change with altitude, the flap edge fence (406) being moved to a deployed position for the first set of flight conditions, and the flap edge fence being moved to a stowed position for the second set of flight conditions.
  2. 11
    A method for reducing airflow noise for an aircraft having a wing main element (402); a flap (408) coupled to the wing main element (402); and a flap edge fence (406) coupled to the flap (408), said method comprising:deploying the flap edge fence (406) for a first set of flight conditions upon approach;and stowing the flap edge fence (406) for a second set of flight conditions during cruise, the flap edge fence (406) being independently moveable with respect to said flap and passively reconfigurable using the ambient temperature change with altitude, the flap edge fence (406) being moved to a deployed position for the first set of flight conditions, and the flap edge fence being moved to a stowed position for the second set of flight conditions.