Nova Patents
EP2543818A2

Subsonic swept fan blade

Abstract

A gas turbine engine includes a spool (30), a turbine (46) coupled to drive the spool (30), a propulsor (42) coupled to be driven at a at a design speed by the turbine (46) through the spool (30), and a gear assembly (48) coupled between the propulsor (42) and the spool (30). Rotation of the turbine (46) drives the propulsor (42) at a different speed than the spool (30). The propulsor (42) includes a hub (76) and a row (72) of propulsor blades (74) that extend from the hub (76). Each of the propulsor blades (74) includes an airfoil body. The leading edge (82) of the airfoil body has a swept profile such that, at the design speed, a component of a relative velocity vector of a working gas that is normal to the leading edge (82) is subsonic along the entire radial span.

EP2543818A2, drawing sheet 1
Sheet 1 of 7

Term

5.8 yearsto projected expiry

Projected expiry 29 June 2032, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 6 independent, 9 dependent

  1. 1
    A gas turbine engine (20) comprising:a spool (30);a turbine (46) coupled with said spool (30);a propulsor (42) coupled to be rotated at a design speed about an axis by said turbine (46) through said spool (30);and a gear assembly (48) coupled between said propulsor (42) and said spool (30) such that rotation of said turbine (46) drives said propulsor (42) at a different speed than said spool (30), wherein said propulsor (42) includes a hub (76) and a row (72) of propulsor blades (74) that extend from said hub (76), each of said propulsor blades (74) includes an airfoil body that extends in a radial span between a root (78) and a tip (80), in a chord direction between a leading edge (82) and a trailing edge (84) and in a thickness direction between a pressure side and a suction side, said leading edge (82) of the airfoil body has a swept profile such that, at the design speed, a component of a relative velocity vector of a working gas that is normal to the leading edge (82) is subsonic along the entire radial span.
  2. 2
    A blade (74) for a propulsor (42) of a gas turbine engine, the blade (74) comprising:an airfoil body that extends in a span direction between a root (78) and a tip (80), in a chord direction between a leading edge (82) and a trailing edge (84) and in a thickness direction between a pressure side and a suction side, and said leading edge (82) has a swept profile such that, at a design speed of rotation of said airfoil body, a component of a relative velocity vector of a working gas that is normal to said leading edge (82) is subsonic along the entire span.
  3. 7
    The gas turbine engine or blade as recited in any of claims 3 to 6, wherein said rearward sweep has a sweep angle between 5° and 10° from 0% to 40%, for example from 0% to 50%, of said span or radial span.
  4. 8
    The gas turbine engine or blade as recited in any preceding claim, wherein said swept profile has a single, exclusive transition (96) between a rearward sweep and a forward sweep from 0% to 100% of said span or radial span.
  5. 14
    A method for enhancing efficiency of a propulsor (42) in a gas turbine engine (20), the method comprising:providing a design speed of rotation of a propulsor (42) that includes a hub (76) and a row (72) of propulsor blades (74) that extend from said hub (76), each of said propulsor blades (74) extends in a radial span between a root (78) at said hub (76) and a tip (80), in a chord direction between a leading edge (80) and a trailing edge (82) and in a thickness direction between a pressure side and a suction side;and establishing the leading edge (82) to have a swept profile such that, at the design speed, a component of a relative velocity vector of a working gas that is normal to the leading edge (82) is subsonic along the entire radial span.
  6. 15
    The gas turbine engine, blade or method as recited in any preceding claim, wherein said design speed is at full throttle.