FAN CASING ASSEMBLY WITH COOLER AND METHOD OF MOVING
An apparatus and method for cooling a fluid within a turbine engine. A fan casing assembly for the turbine engine can include an annular fan casing with a peripheral wall having a flow path defined through the casing. A fan casing cooler includes a body to confront the peripheral wall with at least one conduit configured to carry a flow of heated fluid to convectively cool the heated fluid with a flow of air through the flow path.
1 . A fan casing cooler for a fan casing having a peripheral wall, the fan casing cooler comprising:
a body with a first surface confronting the peripheral wall, a second surface opposite the first surface, and at least one thermally sensitive portion; and
at least one conduit provided in the body configured to carry a flow of fluid proximal to the second surface and arranged to transfer heat from the fluid to air flowing through the fan casing;
wherein the at least one thermally sensitive portion is configured to, in response to a change in a thermal condition, passively position at least a portion of the fan casing cooler into the air flowing through the fan casing.
2 . The fan casing cooler of claim 1 wherein the thermally sensitive portion comprises a portion of the body forming the first surface.
3 . The fan casing cooler of claim 2 wherein the body comprises a set of metal layers responsive to a change in a thermal condition.
4 . The fan casing cooler of claim 3 wherein the body comprises a layer of aluminum alloy and a layer of aluminum silicon carbide.
5 . The fan casing cooler of claim 2 wherein the body further comprises one of segmented continuous fins or discrete fins on a portion of the body opposite the first surface.
6 . The fan casing cooler of claim 5 wherein the body further comprises at least one hinge located between the continuous fin segments.
7 . The fan casing cooler of claim 5 wherein body is configured to increase an attack angle orientation of the segmented continuous fins or discrete fins in response to the change in the thermal condition.
8 . The fan casing cooler of claim 1 wherein a forward section or an aft section of the fan casing cooler is operably coupled to the peripheral wall of the fan casing.
9 . The fan casing cooler of claim 1 wherein a center section of the fan casing cooler is operably coupled to the peripheral wall of the fan casing and a forward portion of the fan casing cooler curves concavely and an aft portion of the fan casing cooler curves convexly in response to the change in the thermal condition.
10 . The fan casing cooler of claim 1 wherein the fan casing has outboard guide vanes mounted thereto and the fan casing cooler is located between adjacent outboard guide vanes.
11 . A heat exchanger body comprising:
a first surface;
a second surface opposite the first surface; and
at least one thermally sensitive portion configured to change shape in response to a change in a thermal condition;
wherein at least one conduit is configured to carry a flow of fluid proximal to the second surface to transfer heat from the fluid to an airflow passing along the second surface and the thermally sensitive portion is configured to passively position at least a portion of the heat exchanger body into the airflow.
12 . The heat exchanger body of claim 11 wherein the thermally sensitive portion comprises a portion of the heat exchanger body proximal to the first surface.
13 . The heat exchanger body of claim 12 wherein the portion of the heat exchanger body proximal to the first surface includes a set of metal layers responsive to a change in a thermal condition.
14 . The heat exchanger body of claim 13 wherein the portion of the heat exchanger body proximal to the first surface includes a layer of aluminum alloy and a layer of aluminum silicon carbide.
15 . The heat exchanger body of claim 13 wherein the heat exchanger body further comprises one of segmented continuous fins or discrete fins on a portion of the heat exchanger body opposite the first surface.
16 . The heat exchanger body of claim 11 wherein the heat exchanger body further comprises at least one hinge formed therein.
17 . The heat exchanger body of claim 16 wherein the hinge comprises a channel formed within the heat exchanger body.
18 . A cooler assembly comprising:
a body including a first surface, a second surface opposite the first surface; and
at least one conduit configured to carry a flow of fluid proximal to the second surface;
wherein the body includes at least one thermally sensitive portion configured to, in response to a change in a thermal condition, passively position at least a portion of the cooler assembly into an airflow flowing along the second surface.
19 . The cooler assembly of claim 18 wherein the thermally sensitive portion comprises a portion of the body proximal to the first surface.
20 . The cooler assembly of claim 19 wherein the portion of the body proximal to the first surface includes a set of metal layers responsive to a change in a thermal condition.