Turbine blade cooling system having multiple serpentine trailing edge cooling channels
View Patent ↗A cooling system for a turbine blade of a turbine engine having multiple serpentine trailing edge cooling channels in parallel. The serpentine cooling channels are positioned proximate to a trailing edge of the turbine blade and facilitate increased heat removal with less cooling fluid flow, thereby resulting in increased cooling system efficiency.
1. A turbine blade, comprising:
a generally elongated blade having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the blade at an end generally opposite the first end for supporting the blade and for coupling the blade to a disc, and at least one cavity forming a cooling system in the blade;
at least one first serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one first serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade; and
at least one second serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and in parallel with the at least one first serpentine trailing edge cooling channel for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one second serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
at least one third serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first and second serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one third serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
wherein the at least one second serpentine trailing edge cooling channel is positioned between the at least one first and the at least one third serpentine trailing edge cooling channels and is a five pass serpentine cooling channel, and the at least one first and the at least one third serpentine trailing edge cooling channels are three pass serpentine cooling channels.
2. The turbine blade of claim 1 , further comprising at least one fourth serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first, second, and third serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one fourth serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade.
3. The turbine blade of claim 2 , wherein the at least one third and fourth serpentine trailing edge cooling channels are five pass serpentine cooling channels.
4. The turbine blade of claim 2 , wherein the at least one third and fourth serpentine trailing edge cooling channels include a plurality of trailing edge exhaust orifices.
5. The turbine blade of claim 2 , wherein an inlet for the at least one third serpentine trailing edge cooling channel and wherein an inlet for the at least one fourth serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.
6. The turbine blade of claim 1 , wherein the at least one first serpentine trailing edge cooling channel and the at least one second serpentine trailing edge cooling channel include a plurality of trailing edge exhaust orifices.
7. The turbine blade of claim 1 , wherein an inlet for the at least one first serpentine trailing edge cooling channel and an inlet for the at least one second serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.
8. A turbine blade, comprising:
a generally elongated blade having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the blade at an end generally opposite the first end for supporting the blade and for coupling the blade to a disc, and at least one cavity forming a cooling system in the blade;
at least one first serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one first serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade; and
at least one second serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and in parallel with the at least one first serpentine trailing edge cooling channel for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one second serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
at least one third serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first and second serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one third serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
at least one fourth serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first, second, and third serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one fourth serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
wherein the at least one second and the at least one third serpentine trailing edge cooling channels are positioned between the at least one first and the at least one fourth serpentine trailing edge cooling channels and are five pass serpentine cooling channels, and the at least one first and the at least one fourth serpentine trailing edge cooling channels are three pass serpentine cooling channels.
9. The turbine blade of claim 8 , wherein the at least one second and third serpentine trailing edge cooling channels include a plurality of trailing edge exhaust orifices.
10. The turbine blade of claim 8 , wherein an inlet for the at least one second serpentine trailing edge cooling channel and wherein an inlet for the at least one third serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.
11. The turbine blade of claim 8 , wherein the at least one first serpentine trailing edge cooling channel and the at least one fourth serpentine trailing edge cooling channel include a plurality of trailing edge exhaust orifices.
12. The turbine blade of claim 8 , wherein an inlet for the at least one first serpentine trailing edge cooling channel and an inlet for the at least one fourth serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.
13. A turbine blade, comprising:
a generally elongated blade having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the blade at an end generally opposite the first end for supporting the blade and for coupling the blade to a disc, and at least one cavity forming a cooling system in the blade;
at least one first serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one first serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade; and
at least one second serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and in parallel with the at least one first serpentine trailing edge cooling channel for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one second serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
at least one third serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first and second serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one third serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade;
wherein the at least one second serpentine trailing edge cooling channel is positioned between the at least one first and the at least one third serpentine trailing edge cooling channels and is at least a five pass serpentine cooling channel, and the at least one first and the at least one third serpentine trailing edge cooling channels are at least three pass serpentine cooling channels.
14. The turbine blade of claim 13 , further comprising at least one fourth serpentine trailing edge cooling channel that is at least a three pass channel positioned proximate to the trailing edge of the generally elongated blade and parallel with the at least one first, second, and third serpentine trailing edge cooling channels such that the second and third serpentine trailing edge cooling channels are positioned between the first and fourth serpentine trailing edge cooling channels for receiving cooling fluids from a cooling fluid source, passing the cooling fluids through the at least one fourth serpentine trailing edge cooling channel, and exhausting the cooling fluids through the trailing edge of the blade.
15. The turbine blade of claim 14 , wherein the at least one second and third serpentine trailing edge cooling channels are at least five pass serpentine cooling channels.
16. The turbine blade of claim 14 , wherein the at least one second and third serpentine trailing edge cooling channels include a plurality of trailing edge exhaust orifices.
17. The turbine blade of claim 14 , wherein an inlet for the at least one second serpentine trailing edge cooling channel and wherein an inlet for the at least one third serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.
18. The turbine blade of claim 13 , wherein the at least one first serpentine trailing edge cooling channel is at least a five pass serpentine cooling channel.
19. The turbine blade of claim 13 , wherein the at least one fourth serpentine trailing edge cooling channel is at least a five pass serpentine cooling channel.
20. The turbine blade of claim 13 , wherein the at least one first serpentine trailing edge cooling channel and the at least one fourth serpentine trailing edge cooling channel include a plurality of trailing edge exhaust orifices and wherein an inlet for the at least one first serpentine trailing edge cooling channel and an inlet for the at least one fourth serpentine trailing edge cooling channel are generally orthogonal to a longitudinal axis of a cooling fluid supply channel.