Flexible swirlers
A swirler includes a swirler body and a plurality of axial swirl vanes extending radially outward from the swirler body. At least one of the swirler body or vanes includes a spring channel defined therethrough. A fuel injector for a gas turbine engine can include an inner air swirler and/or outer air swirler as described above.
1. A swirler comprising:
a swirler body; and
a plurality of axial swirl vanes extending radially outward from the swirler body, wherein at least one of the swirler body or vanes includes a spring channel defined therethrough, wherein the swirler body includes an inner air swirler bullet with an opening defined in a downstream end thereof, wherein a plurality of spring channels are defined through the inner air swirler bullet, each extending from a point upstream of the opening and extending to the opening of the inner air swirler bullet.
2. A swirler as recited in claim 1 , wherein the plurality of spring channels defined through the inner air swirler bullet extend helically about the inner air swirler bullet.
3. A swirler comprising:
a swirler body; and
a plurality of axial swirl vanes extending radially outward from the swirler body, wherein at least one of the swirler body or vanes includes a spring channel defined therethrough, wherein the spring channel has a labyrinthine cross-sectional profile to inhibit flow leakage through the spring channel.
4. A fuel injector for a gas turbine engine comprising:
a) an injector body having a feed arm with a nozzle body connected thereto;
b) a fuel conduit fluidly connecting a fuel inlet portion of the feed arm to a fuel circuit in the nozzle body to form a fuel path through the injector body;
c) an outer air swirler operatively connected to the nozzle body outboard of the fuel circuit, the outer air swirler including a barrel with a plurality of swirl vanes extending radially outward from the barrel; and
d) an inner air swirler operatively connected to the nozzle body inboard of the fuel circuit, the inner air swirler including an inner air swirler bullet with a plurality of swirl vanes extending radially outward from the inner air swirler bullet, wherein at least one of the barrel, the inner air swirler bullet, the plurality of swirl vanes of the outer air swirler, or the plurality of swirl vanes of the inner air swirler includes a spring channel defined therethrough, wherein the spring channel has a labyrinthine cross-sectional profile to inhibit flow leakage through the spring channel.