CABINET

REF

PART

DESCRIPTION

1

521100

GAUZE FILL VENT

2

521031

FILL VENT WELDED ASSY

3

473677

CLAMP HOSE HERBIE TYPE F

4

521096

HOSE VENT / WEIR / DRAIN

5

521033

SEAL FILL VENT

6

521107

HOSE FILL LONG 3887

 

521107

HOSE FILL LONG 3887

 

473371

HOSE FILL (3885/6S)

 

473371

HOSE FILL (3885/6S)

7

521053

GASKET SOUND

8

473543

GASKET DOOR DW

9

388353

RETAINER GASKET UPPER

10

473555

GUSSET GASKET CORNER RH

 

473556

GUSSET GASKET CORNER LH

11

556007

SCREW ST 8X12MM TA MTS PH SS

12

388370

RETAINER GASKET RH

 

388371

RETAINER GASKET LH

13

521000

WRAPPER CABINET

14

611979P

SCREW ST 8X3/8 TAB MUSH PH X10

15

521069

PANEL REAR TOP 3887

16

521070

PANEL REAR BOTTOM 3887

17

388255

PLATE TAPPING

18

521091

SOUND ABSORBER BLANKET

19

556036

SCREW ST 8X10MM TAB MTS PH NP

20

521024

COVER CHASSIS

21

556104

NUT M4 HEX FS MS NIPL

22

556506#

WASHER 5/32X7/16 20BG MS NIPL

23

388228

CLAMP WIRING

24

521129

INSULATOR STRIP 3887

25

521003

HINGE PLATE PRESSING

26

556045

SCREW MC M5X8 PAN PH MS NP

27

521193

GUIDE QUADRANT GREY

28

521032

CAP FILL VENT

29

* 556042

SCREW MC M5X10 PAN PH SS

 

556070

SCREW MC M5X12 PAN PH SS

30

521290

TONGUE LATCH 3887

31

388245

ROLLER STUD TUB

MANUAL 599026

MODEL

712M

813E

912T

913T

13

Page 13
Image 13
GE 913T, 812E, 912T, 712M, 813E manual Model

813E, 913T, 712M, 912T, 812E specifications

The GE 812E, 912T, 712M, 913T, and 813E are part of General Electric's robust lineup of industrial gas turbines, designed to meet the growing demand for efficient, clean, and flexible energy solutions. Each model offers distinct features, characteristics, and technologies tailored for various operational needs in the energy sector.

The GE 812E is known for its exceptional efficiency and reliability. It utilizes advanced aerodynamics and materials technology to enhance performance and reduce emissions. This model is particularly suited for peaking power applications, where quick start-up times and operational flexibility are crucial. Its modular design allows for simplified maintenance and reduced downtime, making it a preferred choice for utilities.

The 912T model, on the other hand, boasts a higher power output with enhanced thermal efficiency. Utilizing cutting-edge turbine blade cooling techniques and advanced combustion system designs, the 912T achieves lower nitrogen oxide (NOx) emissions. This model is primarily used in combined cycle power plants, where its ability to operate at varying loads increases overall system efficiency and reduces operational costs.

The GE 712M gas turbine is recognized for its compact size and high power density, making it ideal for mid-sized power generation systems. It incorporates advanced digital controls for optimized operation and improved fuel efficiency. Its lightweight and robust design ensures ease of installation and versatility in diverse environments, from traditional power plants to distributed generation applications.

The 913T is engineered for enhanced performance in combined cycle configurations. This gas turbine features advanced materials that withstand high temperatures and pressure, leading to improved reliability and efficiency. Moreover, it incorporates state-of-the-art diagnostics and predictive maintenance capabilities, which minimize unplanned outages and maximize uptime.

Lastly, the GE 813E is designed for flexibility and high efficiency, capable of operating on a wide range of fuels including natural gas, biogas, and synthetic fuels. Its innovative cooling technologies and combustion system allow it to maintain efficiency while minimizing pollutants. This model is particularly effective in maximizing the economic and environmental benefits for operators, particularly in areas with stringent emission regulations.

Together, the GE 812E, 912T, 712M, 913T, and 813E gas turbines represent advanced solutions for modern energy challenges, combining high performance, reliability, and technological innovation to provide sustainable energy options for the future.