IP Library › Granted Patent US 10,633,989
Granted Patent B2
US 10,633,989 · App. 15/775,168 · Granted Apr 28, 2020

Turbomachine and turbine nozzle therefor

Inventors: Shashwat Swami Jaiswal (Bangalore, IN); Rohit Chouhan (Bangalore, IN); Lukasz Szajko (Warsaw, PL)
Assignee: General Electric Company
F01D9/041F01D5/141F05D2240/122F05D2240/128F05D2250/74
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,633,989
App. No.
15/775,168
Granted
Apr 28, 2020
Kind
B2
Abstract

A nozzle has an airfoil, and the nozzle is configured for use with a turbomachine. The airfoil has a throat distribution measured at a narrowest region in a pathway between adjacent nozzles, at which adjacent nozzles extend across the pathway between opposing walls to aerodynamically interact with a fluid flow. The airfoil defines the throat distribution, and the throat distribution reduces aerodynamic loss and improves aerodynamic loading on the airfoil. A trailing edge of the airfoil deviates from an axial plane by about 0.1 degrees to about 5 degrees. A turbomachine comprising a plurality of nozzles is also provided.

Claims (26)

1. A nozzle having an airfoil, the nozzle configured for use with a turbomachine, the airfoil comprising:

a throat distribution defined by values set forth in Table 1 within a tolerance of +/−10%, the throat distribution being measured at a narrowest region in a pathway between adjacent nozzles, at which adjacent nozzles extend across the pathway between opposing walls to aerodynamically interact with a fluid flow; and

the airfoil defining the throat distribution, the throat distribution reducing aerodynamic loss and improving aerodynamic loading on the airfoil, and a trailing edge of the airfoil deviating from an axial plane by 0.1 degrees to 5 degrees.

2. The nozzle of claim 1 , wherein the trailing edge of the airfoil deviates from the axial plane by 1.6 degrees to 2.0 degrees.

3. The nozzle of claim 1 , wherein the trailing edge of the airfoil deviates from the axial plane by 1.8 degrees.

4. The nozzle of claim 1 , wherein the throat distribution, as defined by a trailing edge of the airfoil, extends curvilinearly from a throat/throat mid-span value of 78% at 0% span to a throat/throat mid-span value of 100% at 53% span, and to a throat/throat mid-span value of 128% at 100% span; and

wherein the span at 0% is at a radially inner portion of the airfoil and a span at 100% is at a radially outer portion of the airfoil.

5. The nozzle of claim 1 , wherein the airfoil has a thickness distribution (Tmax/Tmax_Midspan) as defined by values set forth in Table 2.

6. The nozzle of claim 5 , wherein the airfoil has a non-dimensional thickness distribution as defined by values set forth in Table 3.

7. The nozzle of claim 6 , wherein the airfoil has a non-dimensional axial chord distribution as defined by values set forth in Table 4.

8. A nozzle having an airfoil, the nozzle configured for use with a turbomachine, the airfoil comprising:

a throat distribution measured at a narrowest region in a pathway between adjacent nozzles, at which adjacent nozzles extend across the pathway between opposing walls to aerodynamically interact with a fluid flow; and

the airfoil defining the throat distribution, the throat distribution defined by values set forth in Table 1 within a tolerance of +/−10%, the throat distribution reducing aerodynamic loss and improving aerodynamic loading on the airfoil, and a trailing edge of the airfoil deviating from an axial plane by 1.6 degrees to 2.0 degrees.

9. The nozzle of claim 8 , wherein the throat distribution, as defined by a trailing edge of the airfoil, extends curvilinearly from a throat/throat mid-span value of 78% at 0% span to a throat/throat mid-span value of 100% at 53% span, and to a throat/throat mid-span value of 128% at 100% span; and

wherein the span at 0% is at a radially inner portion of the airfoil and a span at 100% is at a radially outer portion of the airfoil.

10. The nozzle of claim 8 , wherein the airfoil has a thickness distribution (Tmax/Tmax_Midspan) as defined by values set forth in Table 2.

11. The nozzle of claim 8 , wherein the airfoil has a non-dimensional thickness distribution as defined by values set forth in Table 3.

12. The nozzle of claim 8 , wherein the airfoil has a non-dimensional axial chord distribution as defined by values set forth in Table 4.

13. A turbomachine comprising a plurality of nozzles, each nozzle comprising an airfoil, the turbomachine comprising:

opposing walls defining a pathway into which a fluid flow is receivable to flow through the pathway, a throat distribution is measured at a narrowest region in the pathway between adjacent nozzles, at which adjacent nozzles extend across the pathway between the opposing walls to aerodynamically interact with the fluid flow; and

the airfoil defining the throat distribution, the throat distribution defined by values set forth in Table 1 within a tolerance of +/−10%, the throat distribution reducing aerodynamic loss and improving aerodynamic loading on the airfoil, and a trailing edge of the airfoil deviating from an axial plane by 0.1 degrees to 5 degrees.

14. The turbomachine of claim 13 , wherein the trailing edge of the airfoil deviates from an axial plane by 1.6 degrees to 2.0 degrees.

15. The turbomachine of claim 13 , wherein the trailing edge of the airfoil deviates from an axial plane by 1.8 degrees.

16. The turbomachine of claim 13 , wherein the airfoil has a thickness distribution (Tmax/Tmax_Midspan) as defined by values set forth in Table 2.

17. The turbomachine of claim 13 , wherein the airfoil has a non-dimensional thickness distribution according to values set forth in Table 3.

18. The turbomachine of claim 13 , wherein the airfoil has a non-dimensional axial chord distribution according to values set forth in Table 4.

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 May 10, 2018
From: JAISWAL, SHASHWAT SWAMI; CHOUHAN, ROHIT; SZAJKO, LUKASZ
To: GENERAL ELECTRIC COMPANY
Reel/Frame 045768/0362 →
Continuity (1)
Related Publication 20180283190A1 · Oct 4, 2018