Gas turbine engine providing simulated boundary layer thickness increase
View Patent ↗A nacelle assembly for a gas turbine engine includes a fan cowl disposed about an axis, a core cowl within the fan cowl and a bleed passage having an inlet that receives a bleed airflow and an outlet that discharges the bleed airflow in an upstream direction from the outlet. The bleed airflow is selectively introduced near a boundary layer of an inlet lip section of the fan cowl.
1. A nacelle assembly, comprising:
a fan cowl disposed about an axis;
a core cowl at least partially within said fan cowl;
a low pressure compressor stage and a high pressure compressor stage disposed within said core cowl; and
a bleed passage at least partially disposed within said fan cowl and having an inlet that receives a bleed airflow and an outlet that discharges said bleed airflow in an upstream direction from said outlet, wherein said bleed airflow is selectively communicated from a location separate from the high pressure compressor stage and introduced through an interior wall of said fan cowl near a boundary layer of an inlet lip section of said fan cowl.
2. The assembly as recited in claim 1 , wherein said bleed airflow is discharged from said outlet in a direction having at least a component in a direction opposite that of an incoming airflow.
3. The assembly as recited in claim 2 , wherein said bleed airflow is discharged from said outlet at a non-parallel angle relative to said direction of incoming airflow.
4. The assembly as recited in claim 1 , wherein a valve is positioned adjacent said outlet and is selectively actuable to introduce said bleed airflow near said boundary layer of said inlet lip section.
5. The assembly as recited in claim 4 , wherein said valve includes at least one flap assembly pivotally attached to said outlet and actuable to introduce said bleed airflow near said boundary layer of said inlet lip section.
6. The assembly as recited in claim 4 , wherein a control monitors operability conditions of a gas turbine engine receiving said nacelle assembly and controls said valve based upon said operability conditions.
7. The assembly as recited in claim 1 , wherein said bleed passage includes structure to tap airflow from a compressor section of a gas turbine engine that is to include said nacelle assembly.
8. The assembly as recited in claim 1 , wherein said bleed airflow is introduced through both of said interior wall and an exterior wall of said fan cowl.
9. A nacelle assembly, comprising:
a fan cowl disposed about an axis;
a core cowl at least partially within said fan cowl;
a bleed passage having an inlet that receives a bleed airflow and an outlet that discharges said bleed airflow in an upstream direction from said outlet, wherein said bleed airflow is selectively introduced near a boundary layer of an inlet lip section of said fan cow; and
a valve positioned adjacent said outlet, wherein said valve includes at least one flap assembly pivotally attached to said outlet and actuable to introduce said bleed airflow near said boundary layer of said inlet lip section.
10. A nacelle assembly, comprising:
a fan cowl disposed about an axis;
a core cowl at least partially within said fan cowl;
a bleed passage at least partially disposed within said fan cowl and having an inlet that receives a bleed airflow and an outlet that discharges said bleed airflow in an upstream direction from said outlet, wherein said bleed airflow is selectively introduced through an interior wall of said fan cowl near a boundary layer of an inlet lip section of said fan cowl; and
a valve is positioned adjacent said outlet and is selectively actuable to introduce said bleed airflow near said boundary layer of said inlet lip section; wherein said valve includes at least one flap assembly pivotally attached to said outlet and actuable to introduce said bleed airflow near said boundary layer of said inlet lip section.