IP Library Granted Patent US 9,739,155
Granted Patent B2
US 9,739,155 · App. 14/143,537 · Granted Aug 22, 2017

Structural configurations and cooling circuits in turbine blades

Inventors: Aaron Ezekiel Smith (Simpsonville, SC); Lisa Anne Wichmann (Smyrna, GA)
Assignee: General Electric Company
F01D5/188F01D5/187F05D2240/305F05D2240/306F05D2250/71F05D2250/711F05D2250/712F05D2250/713F05D2250/75F05D2260/201F05D2260/202F05D2260/2212F05D2260/22141Y02T50/676
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Quick Facts
Patent No.
US 9,739,155
App. No.
14/143,537
Granted
Aug 22, 2017
Kind
B2
Abstract

A turbine blade that includes an airfoil defined by a concave shaped pressure side outer wall and a convex shaped suction side outer wall that connect along leading and trailing edges and, therebetween, form a radially extending chamber for receiving the flow of a coolant. The turbine blade further may include a rib configuration that partitions the chamber of the airfoil into radially extending flow passages. A first flow passage may include a first side on which turbulators are positioned, wherein each of the turbulators comprises a canted configuration.

Claims (44)

1. A turbine blade comprising an airfoil defined by a concave shaped pressure side outer wall and a convex shaped suction side outer wall that connect along leading and trailing edges and, therebetween, form a radially extending chamber for receiving the flow of a coolant, the turbine blade further comprising:

a rib configuration that partitions the chamber of the airfoil into radially extending flow passages;

wherein a first flow passage includes a first side on which turbulators are positioned, wherein each of the turbulators comprises a canted configuration;

wherein the canted configuration comprises each of the turbulators being canted relative to a reference line on the first side that has a constant radial height;

wherein the canted configuration of the turbulators comprises an acute angle of at least 20 degrees being formed between each of the turbulators and one of the reference lines;

wherein the first flow passage is defined by radially extending sides that include: a second side that is opposite the first side, and two additional sides, a third side and a fourth side, that flank the first side and extend adjacent thereto;

wherein each of the turbulators comprises an elongated, steep-sided protrusion;

wherein the first side comprises a traverse rib; and

wherein the traverse rib and the turbulators are configured to extend through a camber line of the airfoil.

2. The turbine blade according to claim 1 , wherein the canted configuration of the turbulators comprises an acute angle of at least 40 degrees being formed between each of the turbulators and one of the reference lines.

3. The turbine blade according to claim 1 , wherein each of the turbulators extends uninterrupted across a width of the first side of the flow passage;

wherein the first side comprises at least 5 turbulators radially spaced between an inboard end and an outboard end of the first side; and

wherein the turbulators comprise a parallel configuration.

4. The turbine blade according to claim 1 , wherein each of the turbulators extends partially across a width of the first side of the flow passage;

wherein the first side comprises at least 5 turbulators radially spaced between an inboard end and an outboard end of the first side; and

wherein the turbulators comprise a parallel configuration.

5. The turbine blade according to claim 1 , wherein each of the turbulators extend partially across the first side; and

wherein the first side comprises at least 5 turbulators that include a regular radial spacing between a first turbulator positioned near an inboard end of the first side and a tenth turbulator near an outboard end of the first side; and

wherein the turbulators are laterally alternated.

6. The turbine blade according to claim 1 , wherein the second side comprises turbulators configured to approximately mirror the turbulators on the first side.

7. The turbine blade according to claim 1 , wherein the second side comprises turbulators configured as the turbulators on the first side; and

wherein the turbulators on the second side are configured to alternate radially with the turbulators on the first side.

8. The turbine blade according to claim 1 , wherein the second side comprises turbulators that are canted relative to a reference line on the second side that has a constant radial height;

wherein the turbulators on the second side each comprises an elongated, steep-sided protrusion; and

wherein the canted configuration of the turbulators on the second side comprises an acute angle of at least 20 degrees being formed between each of the turbulators and one of the reference lines.

9. The turbine blade according to claim 1 , wherein the second side comprises turbulators having a canted configuration;

wherein the turbulators on the second side are canted relative a reference line on the second side that has a constant radial height such that an acute angle of at least 20 degrees is formed between each of the turbulators and one of the reference lines on the second side;

wherein the second side comprises at least 5 turbulators radially spaced between an inboard end and an outboard end of the second side; and

wherein the turbulators of the second side comprise a parallel configuration.

10. The turbine blade according to claim 9 , wherein the turbulators of the first and the second sides are radially alternated.

11. The turbine blade according to claim 9 , wherein the second side comprises one of a camber line rib, a pressure side outer wall, and a suction side outer wall of the airfoil.

12. The turbine blade according to claim 9 , wherein the second side comprises a traverse rib.

13. The turbine blade according to claim 1 , wherein the third side comprises turbulators having a canted configuration; and

wherein the turbulators on the third side are canted relative a reference line on the third side that has a constant radial height such that an acute angle of at least 20 degrees is formed between each of the turbulators and one of the reference lines on the third side.

14. The turbine blade according to claim 13 , wherein the third side comprises at least 5 turbulators radially spaced between an inboard end and an outboard end of the third side; and

wherein the turbulators of the third side comprise a parallel configuration; and

wherein the turbulators of the first and third sides are radially alternated.

15. The turbine blade according to claim 13 , wherein one of the second side, the third side, and the fourth side comprises a segment of a camber line rib having a wavy profile;

wherein the wavy profile includes one having at least one back-and-forth “S” shape; and

wherein the turbine blade comprises a turbine rotor blade.

16. The turbine blade according to claim 1 , wherein the second side, the third side, and the fourth side comprise turbulators having a canted configuration;

wherein the turbulators on the second side are canted relative a reference line on the second side that has a constant radial height such that an acute angle of at least 20 degrees is formed between each of the turbulators and one of the reference lines on the second side;

wherein the turbulators on the third side are canted relative a reference line on the third side that has a constant radial height such that an acute angle of at least 20 degrees is formed between each of the turbulators and one of the reference lines on the third side; and

wherein the turbulators on the fourth side are canted relative a reference line on the fourth side that has a constant radial height such that an acute angle of at least 20 degrees is formed between each of the turbulators and one of the reference lines on the fourth side.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2013
From: SMITH, AARON EZEKIEL; WICHMANN, LISA ANNE
To: GENERAL ELECTRIC COMPANY
Reel/Frame 031858/0665 →
Continuity (1)
Related Publication 20150184525A1 · Jul 2, 2015