IP Library Granted Patent US 12,662,959
Granted Patent B2
US 12,662,959 · App. 19/265,747 · Granted Jun 23, 2026

Gas turbine engine

Inventors: Daniel Alan Niergarth (Norwood, OH); Jeffrey Donald Clements (Mason, OH); Jeffrey S. Spruill (Hillsboro, OH); Erich Alois Krammer (West Chester, OH); Matthew Kenneth MacDonald (Austin, TX); Scott Alan Schimmels (Miamisburg, OH)
Assignee: General Electric Company
F02C3/06F02C7/36F05D2200/13F05D2200/14F05D2200/221F05D2240/60
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Quick Facts
Patent No.
US 12,662,959
App. No.
19/265,747
Filed
Jul 10, 2025
Granted
Jun 23, 2026
Kind
B2
Art Unit
3741
USPC
60/805
Abstract

A gas turbine engine includes a turbomachine having an engine core including a high-pressure compressor, a combustion section, a high-pressure turbine, and a high-pressure shaft coupled to the high-pressure compressor and the high-pressure turbine. The engine core has a length (L CORE ), and the high-pressure compressor has an exit stage diameter (D CORE ). The high-pressure compressor defines a high-pressure compressor exit area (A HPCExit ) in square inches. The gas turbine engine defines a redline exhaust gas temperature (EGT) in degrees Celsius, a total sea level static thrust output (Fn Total ) in pounds, and a corrected specific thrust, wherein the corrected specific thrust is greater than or equal to 42 and less than or equal to 90, the corrected specific determined as follows: Fn Total ×EGT/(A HPCExit 2 ×1000). The high-pressure shaft is characterized by a high-speed shaft rating (HSR) from 1.5 to 6.2, and a ratio of L CORE /D CORE is from 2.1 to 4.3.

Claims (127)

1 . A gas turbine engine comprising:

a turbomachine comprising a compressor section having a high-pressure compressor, a combustion section, and a turbine section having a high-pressure turbine arranged in serial flow order, the turbomachine includes an engine core including the high-pressure compressor, the combustion section, and the high-pressure turbine, the engine core having a length (L CORE ) in inches, the high-pressure compressor having an exit stage diameter (D CORE ) in inches, the high-pressure compressor defining a high-pressure compressor exit area (A HPCExit ) in square inches, and the high-pressure compressor including a high-pressure compressor flowpath and a plurality of stages of high-pressure compressor rotor blades and high-pressure compressor stator vanes, wherein the gas turbine engine defines a redline exhaust gas temperature (EGT) in degrees Celsius, a total sea level static thrust output (Fn Total ) in pounds, and a corrected specific thrust, wherein the corrected specific thrust is greater than or equal to 42 and less than or equal to 90, the corrected specific thrust determined as follows: Fn Total ×EGT/(A HPCExit 2 ×1000); and

a high-pressure shaft coupled to the high-pressure compressor and the high-pressure turbine, the high-pressure shaft characterized by a ratio of L CORE /D CORE greater than or equal to 2.1 and less than

4.08

(

HSP

x

-

8

)

0.14

,

 wherein HSPx is a first high-speed shaft operating parameter given 2.1 and less than by:

HSPx

=

(

A

ex

)

2

*

P

STD

*

OPR

T

O

FN

T

O

*

(

N

Stg

10

)

2

,

where N Stg is a number of stages in the high-pressure compressor, A EX is equal to A HPCExit , P STD is standard pressure in pounds per square inch, OPR T/O is an overall pressure ratio of the gas turbine engine at takeoff flight conditions corresponding to a maximum thrust rating for an engine core configuration, and FN T/O is a sea-level static thrust in lbf of the gas turbine engine at takeoff flight conditions corresponding to the maximum thrust rating for the engine core configuration.

2 . The gas turbine engine of claim 1 , wherein the high-pressure compressor includes nine stages, ten stages, or eleven stages.

3 . The gas turbine engine of claim 1 , wherein the high-pressure turbine includes one stage or two stages.

4 . The gas turbine engine of claim 1 , wherein the exhaust gas temperature (EGT) is from 1,063° C. to 1,282° C.

5 . The gas turbine engine of claim 1 , further comprising:

a fan; and

a reduction gearbox, wherein the fan is driven by the turbomachine across the reduction gearbox, wherein the reduction gearbox comprises a gear ratio between 3.2 and 4.5.

6 . The gas turbine engine of claim 1 , wherein L CORE /D CORE is less than MAX(4.8−0.088*(HSP X ), 3.18−0.015*(HSP X )).

7 . The gas turbine engine of claim 1 , wherein HSP X is from 3.8 in 2 to 69.1 in 2 .

8 . The gas turbine engine of claim 1 , wherein A EX is from 11 in 2 to 95 in 2 .

9 . The gas turbine engine of claim 1 , wherein P STD is approximately 14.7 psi.

10 . The gas turbine engine of claim 1 , wherein OPR T/O is from 26.3 to 82.

11 . The gas turbine engine of claim 1 , wherein FN T/O is from 12,674 lbf to 107,480 lbf.

12 . The gas turbine engine of claim 1 , wherein A EX is given by:

A EX =π*(R TIP,EX 2 −R HUB,EX 2 ), where R TIP,EX is a radius in inches of a tip of a high-pressure compressor blade of the exit stage of the high-pressure compressor, and R HUB,EX is a radius in inches of a hub of the high-pressure compressor at the exit stage.

13 . The gas turbine engine of claim 12 , wherein R TIP,EX is from 4.73 in. to 15.83 in.

14 . The gas turbine engine of claim 12 , wherein R HUB,EX is from 4.31 in. to 14.85 in.

15 . A method of operating the gas turbine engine of claim 1 , the method comprising operating the gas turbine engine to generate an engine thrust, a redline speed of the high-pressure shaft being from 10,580 RPM to 35,788 RPM.

16 . A gas turbine engine comprising:

a turbomachine comprising a compressor section having a high-pressure compressor, a combustion section, and a turbine section having a high-pressure turbine arranged in serial flow order, the turbomachine includes an engine core including the high-pressure compressor, the combustion section, and the high-pressure turbine, the engine core having a length (L CORE ) in inches, the high-pressure compressor having an exit stage diameter (D CORE ) in inches, the high-pressure compressor defining a high-pressure compressor exit area (A HPCExit ) in square inches, and the high-pressure compressor including a high-pressure compressor flowpath and a plurality of stages of high-pressure compressor rotor blades and high-pressure compressor stator vanes, wherein the gas turbine engine defines a redline exhaust gas temperature (EGT) in degrees Celsius, a total sea level static thrust output (Fn Total ) in pounds, and a corrected specific thrust, wherein the corrected specific thrust is greater than or equal to 42 and less than or equal to 90, the corrected specific thrust determined as follows: Fn Total ×EGT/(A HPCExit 2 ×1000);

a power turbine in flow communication with the high-pressure turbine;

a low-pressure shaft coupled to the power turbine; and

a high-pressure shaft coupled to the high-pressure compressor and the high-pressure turbine, the high-pressure shaft characterized by a ratio of L CORE /D CORE greater than or equal to 2.1 and less than

4.08

(

HSP

x

-

8

)

0.14

,

 wherein HSPx is a first high-speed shaft operating parameter given by:

HSPx

=

(

A

ex

)

2

*

P

STD

*

OPR

T

O

FN

T

O

*

(

N

Stg

10

)

2

,

where N Stg is a number of stages in the high-pressure compressor, A EX equal to A HPCExit , P STD is standard pressure in pounds per square inch, OPR T/O is an overall pressure ratio of the gas turbine engine at takeoff flight conditions corresponding to a maximum thrust rating for an engine core configuration, and FN T/O is a sea-level static thrust in lbf of the gas turbine engine at takeoff flight conditions corresponding to the maximum thrust rating for the engine core configuration.

17 . The gas turbine engine of claim 16 , wherein the high-pressure shaft is characterized by a high-pressure shaft rating (HSR LP ) from 0.8 to 1.6, and HSR LP is given by:

HSR

LP

=

1

k

*

N

1

r

/

l

*

D

CORE

*

(

L

CORE

D

CORE

)

2

,

where N1 r/l is a redline speed of the low-pressure shaft in RPM, and k is a constant with a value of 10 6 inch-RPM.

18 . The gas turbine engine of claim 16 , further comprising:

a fan; and

a reduction gearbox, wherein the fan is driven by the turbomachine across the reduction gearbox, wherein the reduction gearbox comprises a gear ratio between 3.2 and 4.5.

19 . The gas turbine engine of claim 16 , wherein L CORE /D CORE is less than MAX(4.8−0.088*(HSP X ), 3.18−0.015*(HSP X )).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2025
From: NIERGARTH, DANIEL ALAN; CLEMENTS, JEFFREY DONALD; SPRUILL, JEFFREY S.; KRAMMER, ERICH ALOIS; MACDONALD, MATTHEW KENNETH; SCHIMMELS, SCOTT ALAN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 072294/0711 →
Continuity (4)
Continuation In Part 19055734 · Feb 18, 2025
Continuation In Part 18481515 · Oct 5, 2023
Continuation In Part 17978629 · Nov 1, 2022
Related Publication 20250341182A1 · Nov 6, 2025
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