IP Library › Granted Patent US 10,161,255
Granted Patent B2
US 10,161,255 · App. 15/019,442 · Granted Dec 25, 2018

Turbine nozzle having non-axisymmetric endwall contour (EWC)

Inventors: Lee Larned Brozyna (Mauldin, SC); Christopher Lee Golden (Greer, SC); Christopher Donald Porter (Greenville, SC)
Assignee: General Electric Company
F01D9/041F01D5/145F01D5/143F05D2220/31F05D2220/32F05D2240/121F05D2240/128F05D2250/73F05D2250/74Y02T50/673
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Quick Facts
Patent No.
US 10,161,255
App. No.
15/019,442
Granted
Dec 25, 2018
Kind
B2
Abstract

Various embodiments of the invention include turbine nozzles and systems employing such nozzles. Various particular embodiments include a turbine nozzle having: an airfoil having: a suction side; a pressure side opposing the suction side; a leading edge spanning between the pressure side and the suction side; and a trailing edge opposing the leading edge and spanning between the pressure side and the suction side; and at least one endwall connected with the airfoil along the suction side, pressure side, trailing edge and the leading edge, the at least one endwall including a non-axisymmetric contour proximate a junction between the endwall and the leading edge of the airfoil.

Claims (29)

1. A turbine nozzle comprising:

an airfoil having: a suction side; a pressure side opposing the suction side; a leading edge spanning between the pressure side and the suction side; and a trailing edge opposing the leading edge and spanning between the pressure side and the suction side; and

at least one endwall connected with the airfoil along the suction side, pressure side, trailing edge and the leading edge, the at least one endwall including a non-axisymmetric contour proximate a junction between the endwall and the leading edge of the airfoil,

wherein the non-axisymmetric contour includes three distinct leading edge features, the three distinct leading edge features including a leading edge pressure side feature, a leading edge suction side feature and a mid-passage feature,

wherein the leading edge pressure side feature of the non-axisymmetric contour includes a thickened area having an apex at approximately 5% axial chord upstream of the leading edge, and

wherein the non-axisymmetric contour further includes a passage trough on the pressure side of the airfoil, wherein the passage trough includes a depression having an apex at approximately 60% of a chord length of the pressure side of the airfoil, wherein the depression spans approximately 40% to 60% pitch as measured from the pressure side of the airfoil, wherein the at least one endwall directs flow of a working fluid through the passage trough.

2. The turbine nozzle of claim 1 , further comprising a fillet connecting a surface of the endwall to a surface of the airfoil.

3. The turbine nozzle of claim 1 , wherein the turbine nozzle includes a second stage nozzle.

4. The turbine nozzle of claim 1 , wherein the at least one endwall includes an inner endwall or an outer endwall.

5. The turbine nozzle of claim 1 , wherein the thickened area extends across at least approximately 10 percent of an axial length of the endwall, and has a pitch of approximately zero percent to approximately 10 percent from the suction side.

6. The turbine nozzle of claim 1 , wherein the thickened area extends across approximately 20 percent to approximately 30 percent of an axial length of the endwall.

7. The turbine nozzle of claim 1 , wherein at least one of the suction side or the pressure side of the airfoil includes a nominal profile substantially in accordance with Cartesian coordinate values of X, Y and Z set forth in TABLE I, wherein the coordinate values are non-dimensional values of from 0 to 1 convertible to distances by multiplying the values by a trailing edge height expressed in units of distance, and wherein X and Y values connected by smooth continuing arcs define airfoil profile sections at each distance Z along the airfoil, the profile sections at the Z distances being joined smoothly with one another to form the airfoil profile, wherein the Cartesian coordinate values have an origin at a root of the leading edge of the airfoil.

8. A static nozzle section comprising:

a set of static nozzles, the set of static nozzles including at least one nozzle having:

an airfoil having: a suction side; a pressure side opposing the suction side; a leading edge spanning between the pressure side and the suction side; and a trailing edge opposing the leading edge and spanning between the pressure side and the suction side; and

at least one endwall connected with the airfoil along the suction side, pressure side, trailing edge and the leading edge, the at least one endwall including a non-axisymmetric contour proximate a junction between the endwall and the leading edge of the airfoil,

wherein at least one of the suction side or the pressure side of the airfoil includes a nominal profile substantially in accordance with Cartesian coordinate values of X, Y and Z set forth in TABLE I, wherein the coordinate values are non-dimensional values of from 0 to 1 convertible to distances by multiplying the values by a trailing edge height expressed in units of distance, and wherein X and Y values connected by smooth continuing arcs define airfoil profile sections at each distance Z along the airfoil, the profile sections at the Z distances being joined smoothly with one another to form the airfoil profile, wherein the Cartesian coordinate values have an origin at a root of the leading edge of the airfoil.

9. The static nozzle section of claim 8 , further comprising a fillet connecting a surface of the endwall to a surface of the airfoil.

10. The static nozzle section of claim 8 , wherein the turbine nozzle includes a second stage nozzle.

11. The static nozzle section of claim 8 , wherein the non-axisymmetric contour includes a thickened area having an apex at approximately 5% axial chord upstream of the leading edge.

12. The static nozzle section of claim 11 , wherein the thickened area extends across at least approximately 10 percent of an axial length of the endwall, and has a pitch of approximately zero percent to approximately 10 percent from the suction side.

13. The static nozzle section of claim 11 , wherein the thickened area extends across approximately 20 percent to approximately 30 percent of an axial length of the endwall.

14. The static nozzle section of claim 8 , wherein the at least one endwall directs flow of a working fluid through a passage trough proximate the pressure side of the airfoil.

15. A turbine nozzle comprising:

an airfoil having: a suction side; a pressure side opposing the suction side; a leading edge spanning between the pressure side and the suction side; and a trailing edge opposing the leading edge and spanning between the pressure side and the suction side; and

at least one endwall connected with the airfoil along the suction side, pressure side, trailing edge and the leading edge, wherein at least one of the pressure side or the suction side of the airfoil includes a nominal profile substantially in accordance with Cartesian coordinate values of X, Y and Z set forth in TABLE I, wherein the coordinate values are non-dimensional values of from 0 to 1 convertible to distances by multiplying the values by a trailing edge height expressed in units of distance, and wherein X and Y values connected by smooth continuing arcs define airfoil profile sections at each distance Z along the airfoil, the profile sections at the Z distances being joined smoothly with one another to form the airfoil profile, wherein the Cartesian coordinate values have an origin at a root of the leading edge of the airfoil.

16. The turbine nozzle of claim 15 , wherein the at least one endwall includes a non-axisymmetric contour proximate a junction between the endwall and the leading edge of the airfoil.

17. The turbine nozzle of claim 16 , wherein the non-axisymmetric contour includes a thickened area having an apex at approximately 5% axial chord upstream of the leading edge.

18. The turbine nozzle of claim 16 , wherein the thickened area extends across at least approximately 10 percent of an axial length of the endwall, and has a pitch of approximately zero percent to approximately 10 percent from the suction 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 Feb 11, 2016
From: BROZYNA, LEE LARNED; GOLDEN, CHRISTOPHER LEE; PORTER, CHRISTOPHER DONALD
To: GENERAL ELECTRIC COMPANY
Reel/Frame 037702/0771 →
Continuity (1)
Related Publication 20170226878A1 · Aug 10, 2017
Cited By (1)
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