Aeroengine intake having a heat exchanger within an annular closed chamber
A gas turbine engine comprising a nacelle having an intake, the intake defining a generally annular chamber, an engine accessory and a heat exchanger for cooling a fluid of the accessory. The chamber is closed and the heat exchanger is disposed within the chamber operable to provide heat to prevent ice forming on the intake during engine operation.
1. A gas turbine engine comprising a nacelle having an intake, the intake defining a generally annular chamber, an engine accessory and a heat exchanger for cooling a fluid of the accessory characterised in that the chamber is closed and the heat exchanger is disposed within the chamber operable to provide heat to prevent ice forming on the intake during engine operation.
2. A gas turbine engine as claimed in claim 1 wherein a means for circulating air around the chamber and driving the air through the heat exchanger is provided within the chamber.
3. A gas turbine engine as claimed in claim 2 wherein the means for circulating air comprises at least one electrically driven fan.
4. A gas turbine engine as ctaimed in claim 1 wherein the accessory is a generator operable to generate electricity during engine operation.
5. A gas turbine engine as claimed in claim 1 wherein the accessory is a starter/generator operable to drive the engine at start up and generate electricity during engine operation.
6. A gas turbine engine as claimed in claim 1 wherein the accessory is a gearbox for transferring drive between an engine shaft and the accessory.
7. A gas turbine engine as claimed in claim 1 wherein a second heat exchanger is included in the chamber and associated to a second accessory.
8. A gas turbine engine as claimed in claim 1 wherein the intake comprises at least one rib extending substantially around the circumference of and into the chamber.
9. A gas turbine engine as claimed in claim 8 wherein the at least one rib increases in extent into the chamber generally from the heat exchanger thereby increasing its surface area for heat exchanging to provide a more constant heat exchange around the circumference of the intake.
10. A gas turbine engine as claimed in claim 8 wherein further ribs are provided around the circumference to increase the surface area for heat exchanging around the intake to provide a more constant heat exchange around the circumference of the intake.
11. A gas turbine engine as claimed in claim 8 wherein the ribs are provided to increase the rigidity of the intake to protect against foreign body impacts.