GE TMW-1100EC, TMW-800TC, TMW-1100MC manual Part Code Part Name Description

Models: TMW-1100MC TMW-1100E TMW-1100M TMW-800TC TMW-1100EC TMW-800T

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3. To remove door parts.

 

 

 

A04

A13

A05

A06

A07

 

 

 

 

 

 

 

 

 

 

A08

 

 

 

 

 

 

 

 

 

A09

 

 

A12

 

 

 

 

 

 

A10

 

 

A11

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Door Assembly : 3511718600

 

 

A01

A02

A03

 

 

 

 

 

REF NO.

PART CODE

PART NAME

 

 

DESCRIPTION

Q’TY

REMARK

A01

3511610610

DOOR DECORATOR

SUS T0.4

 

 

1

 

A02

7001401011

SCREW

 

PAN 4*10 MFZN

 

2

 

A03

3512206200

DOOR FRAME

 

ABS

 

 

1

 

A04

3517008100

BARRIER SCREEN*O

GLASS T3.2

 

1

 

A05

3516602100

DOOR PLATE

 

SBHG-1A T0.7

 

1

 

A06

3517007600

BARRIER SCREEN*I

PE T0.1

 

 

1

 

A07

3512302310

DOOR GASKET

LUPOL2300

 

1

 

A08

3516004100

SPECIAL SCREW

T1 TRS LR4 POLE 4*10 MFZN

2

 

A09

3513101200

HOOK

 

POM

 

 

1

 

A10

3515101800

SPRING HOOK

PW1

 

 

1

 

A11

3512604800

DOOR HANDLE

ABS CR COATING

 

1

 

A12

3513586900

LABEL

 

AL1020 T0.5

 

1

 

A13

3515204900

HINGE STOPPER*T AS

KOC-1B0K0S

 

1

 

(1)Remove the door gasket from door plate.

(2)Remove the barrier screen inner from door plate.

(3)Remove the door frame from door plate.

(4)Remove the hinge stopper top from door plate.

(5)Remove the spring and the hook.

(6)Remove the barrier screen outer from door frame.

(7)Reverse the above steps for reassembly.

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GE TMW-1100EC, TMW-800TC, TMW-1100MC manual Part Code Part Name Description

TMW-1100MC, TMW-1100E, TMW-1100M, TMW-800TC, TMW-1100EC specifications

The GE TMW series of gas turbines, particularly the TMW-800T, TMW-1100EC, TMW-800TC, TMW-1100M, and TMW-1100E, represent some of the most advanced technology in power generation, designed for efficiency and reliability.

The TMW-800T is renowned for its compact design and high efficiency, making it ideal for both utility and industrial applications. This turbine boasts a modular design that facilitates ease of maintenance and installation, while its advanced aerodynamics contribute to enhanced performance and reduced emissions. Additionally, its ability to operate on multiple fuel types allows for greater operational flexibility.

Similarly, the TMW-1100EC model offers enhanced power output and efficiency. It incorporates advanced combustion technology that minimizes nitrogen oxide emissions, complying with increasingly stringent environmental regulations. The electronic control system in this model allows for superior performance management and load-following capabilities, ensuring optimal performance under varying demand.

The TMW-800TC variant focuses on achieving high thermal efficiency while maintaining significant output levels. Its cooling technologies, including advanced blade cooling techniques and heat recovery systems, enable this turbine to sustain higher operating temperatures, improving its overall efficiency. This design is particularly beneficial in combined cycle power plants, where waste heat can be repurposed to generate additional electricity.

The TMW-1100M is particularly noteworthy for its versatility and adaptability in a wide range of applications, from cogeneration to standalone power generation. Its design includes robust materials and components engineered to withstand rigorous operating conditions, ensuring longevity and reliability, which is essential for industrial users who depend on consistent power availability.

Lastly, the TMW-1100E emphasizes operational efficiency through its advanced control systems and intelligent monitoring. This turbine is equipped with sensors and software that provide real-time data analytics, allowing for proactive maintenance and operational optimization. This technology not only enhances performance but also contributes to lower operational costs.

In summary, the GE TMW gas turbine series, with their various models, exemplify cutting-edge technology and engineering. Their main features include high efficiency, reduced emissions, operational flexibility, and advanced control systems, making them a preferred choice for power generation in both industrial and utility markets. Their adaptability to different fuels and operational environments further solidifies their stance as leading solutions in the gas turbine landscape.