GE QS2800V, QS1800V Cast iron or Noryl plastic-covered carbon, Nitrile and neoprene rubber seals

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2.3Materials Specifications Liquid End

Wetted Castings:

316 Stainless Steel

Pump Shell and Shaft:

316 Stainless Steel

Stages:

 

Noryl*

O-Ring Seals and Shaft Bearings:

Buna-N Rubber

Motor Module

 

 

Power Requirements

1-Phase

 

 

208, 230 V (60 Hz Operation)

 

 

220, 230, 240V (50 Hz Operation)

 

 

3-Phase

 

 

208, 230, 460, 575V (60 Hz Operation)

 

 

220, 380, 400, 415V (50 Hz Operation)

Motor Adapter and Inlet Flow Tube:

316 Stainless Steel

O-Ring Seals:

 

Buna-N Rubber

Motors:

 

Stainless steel shaft and stator shell,epoxy-

 

 

encapsulated stator, electroless nickle-plated

 

 

cast iron or Noryl plastic-covered carbon

 

 

steel stator ends, bronze filter check valve,

 

 

nitrile and neoprene rubber seals

Wire Insulation:

 

Neoprene, chloroprene, hypalon, and/or poly-

 

 

olefin epoxy-potted

Antifreeze:

 

20% Propylene glycol (non-toxic)

 

 

80% Water

WARNING:

90°F (32°C) MAXIMUM OPERATING TEMPERATURE

Special Liquids:

Tonkaflo pumps can handle a variety of liquids. For liquids other than water; aque- ous solutions or corrosive solutes, consult your local Tonkaflo distributor or factory.

Special Materials of Construction:

Ethylene propylene dimonomer (EPDM) and Teflon* pump shaft bears are available for some models. Contact your distributor or the factory.

*Teflon is a trademark of E.I. DuPont de Nemours and Company, Inc.

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Contents Osmonics TONKAFLO Pumps QSV Series Page Operation and Maintenance Manual Flow-Cooled Motor and Liquid End Tonkaflo Service Policy 10.0List of Figures Page Introduction Pump Label Junction Box Motor Label Tonkaflo SpecificationsD e l Q S 2 8 2 5 V 5 Liquid End Motor Module420 Pump Performance Summary2875 rpm 280Nitrile and neoprene rubber seals Cast iron or Noryl plastic-covered carbonSteel stator ends, bronze filter check valve Olefin epoxy-pottedPump Installation Page Page Victaulic Gasket Victaulic Clamp Discharge Screen InstallationPump Water Level Discharge InletMotor Wiring Single-Phase Motors Important Two Sources of Power to Single-Phase ControllerChanging Motor Rotation StepsRolling the Leads to Balance Current Draw Page Do not Run pump Dry or Without Sufficient Pump OperationDo not deadhead pump Inlet strainer/filter plugged General TroubleshootingThrottled at the inlet. Check Ing may draw air intoTo lift or pull fluid from a Ating within the flow rangeNot operational Motor wired improperlyDraw Tory for liquids other than Voltage, then at a potentialPump/motor vibrates Pump leaksField Maintenance Liquid End Removal and InstallationSteps Page Tonkaflo Pump Return Goods Authorization RGA Procedure Dimensional Drawing QS1800V QS2800V SeriesParts Schematic Replacement PartsParts Schematic Part Description QS1800V QS2800V Part NumberClearwater Drive Minnetonka, MN GE Infrastructure Water & Process TechnologiesUSA Warranty Pump Model Number Pump Serial NumberPage North American Sales Euro/Africa Sales Asia/Pacific Sales

QS1800V, QS2800V specifications

The GE QS1800V and QS2800V are part of General Electric's advanced line of gas turbine technology, designed for efficiency and reliability in power generation. These turbines are primarily utilized in industrial and utility-scale applications, providing robust solutions to meet growing energy demands.

The QS1800V boasts a power generation capacity of approximately 1800 kW, while the QS2800V steps up to about 2800 kW. Both of these models are engineered for flexible operation, allowing them to integrate seamlessly into varying grid conditions and supporting fluctuating energy requirements.

One of the standout features of these turbines is their state-of-the-art aerodynamic design, which enhances efficiency by optimizing airflow through the turbine stages. This design leads to a significant reduction in fuel consumption and emissions, aligning with the increasing global need for cleaner energy solutions.

The combustion technology employed in the QS series features low-NOx (nitrogen oxides) burners, which contribute to minimized environmental impact by significantly reducing harmful emissions without compromising performance. This makes the QS1800V and QS2800V ideal for both regulatory compliance and consumers looking for sustainable power options.

In terms of reliability, GE has incorporated advanced materials and manufacturing processes in the construction of the QS series turbines. The use of high-performance alloys and coatings increases the lifespan of critical components, ensuring reduced downtime for maintenance and repairs. The turbine’s modular design further enhances maintainability, allowing for easier access to components and streamlined servicing.

The control systems for the QS1800V and QS2800V turbines feature sophisticated automation technology that ensures optimal operation under various load conditions. Advanced sensors and monitoring systems provide real-time data, enabling predictive maintenance strategies that can help operators avoid costly outages.

Furthermore, the QS series is designed for adaptability, making it compatible with renewable energy sources. This capability allows for hybrid systems that can integrate wind or solar power, providing a comprehensive solution for modern energy demands.

In summary, the GE QS1800V and QS2800V are advanced gas turbines that combine efficiency, sustainability, and reliability, making them a top choice for power generation in various applications. They stand out in their class with technologies that not only meet current energy needs but also pave the way for future advancements in cleaner and more efficient power generation.