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To maintain optimum performance, clean the filters at least every 30 days.

Safety

Air Filters

FRONT

FRONT

Dirty filter—Needs cleaning

Clogged filter—Greatly

 

reduces cooling, heating

 

and airflow.

Turn the Zoneline off before cleaning.

The most important thing you can do to maintain the Zoneline is to clean the filter at least every 30 days. Clogged filters reduce cooling, heating and air flow.

Keeping these filters clean will:

Decrease cost of operation.

Save energy.

Prevent clogged heat exchanger coils.

Reduce the risk of premature component failure.

To clean the air filters:

Vacuum off the heavy soil.

Run water through the filters.

Dry thoroughly before replacing.

To remove the air filters:

2 Air filters

Pull up

To replace the air filters:

Push down

CAUTION: Do not operate the Zoneline without the filters in place. If a filter becomes torn or damaged it should be replaced immediately.

Operating without the filters in place or with damaged filters will allow dirt and dust to reach the in-door coil and reduce the cooling, heating, airflow and efficiency of the unit.

Replacement filters are available from your salesperson, GE dealer, GE Service and Parts Center or authorized Customer Care® servicers.

Instructions

Operating Instructions

Care and Cleaning

Troubleshooting Tips

Customer Service

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GE 2500, 3500 installation instructions Safety Air Filters, Instructions Operating Instructions

2500, 3500 specifications

The GE 2500 and 3500 series gas turbines represent the industry’s benchmark for high-performance, reliable, and efficient power generation. Both models have carved a niche in various applications ranging from base load power generation to peaking and combined cycle operations, further addressing global energy demands with advanced technologies.

The GE 2500 series is known for its compact size and robustness, making it ideal for a range of industrial and utility applications. It typically features a modular design which allows for easy maintenance and upgrades, resulting in reduced downtime. The 2500 can achieve outputs ranging from 25 to 35 megawatts, providing a significant balance of power and efficiency for smaller installations.

Key technologies in the GE 2500 series include advanced combustion systems that improve efficiency while minimizing emissions. This series is equipped with DLN (Dry Low NOx) technology, which significantly reduces nitrogen oxide emissions, enabling compliance with stringent environmental regulations. The turbine employs a sophisticated digital control system for optimized performance, conversion efficiency, and real-time monitoring, ensuring reliability under various operating conditions.

On the other hand, the GE 3500 series offers a higher capacity, producing outputs of up to 200 megawatts. This series incorporates more advanced aerodynamics and materials, designed for high efficiency and reliability in large-scale power plants. The GE 3500 leverages advanced technologies such as H-class combustion systems, capable of achieving efficiencies above 61%, thereby enhancing its economic viability.

Both the 2500 and 3500 series utilize GE’s latest technologies in digital solutions, such as the Digital Wind Farm and Industrial Internet of Things (IoT) integration. These innovations provide operators with predictive analytics capabilities, enabling them to foresee maintenance needs, optimize performance, and minimize operational costs.

In terms of characteristics, both models exhibit excellent load following capabilities, making them well-suited for modern grids with variable energy sources. They also demonstrate exceptional startup times and operational flexibility, essential in addressing fluctuating energy demands.

Overall, the GE 2500 and 3500 series turbines showcase the latest advancements in power generation technology, combining efficiency, reliability, and environmental stewardship, while meeting the diverse needs of today’s energy landscape. These models represent GE's commitment to delivering innovative solutions that enhance operational performance and sustainability in the power sector.