Instrucciones para la instalación

4TRASLADE EL SOPORTE DE LA BISAGRA INFERIOR A LA

IZQUIERDA

Retire la rejilla de la base tomándola unas 6 pulgadas de cada extremo y halando su borde inferior hacia el frente.

Usando un destornillador Torx®, mueva el soporte de la bisagra inferior del lado derecho y la arandela plástica del lado derecho hacia el izquierdo.

NOTA: Si la arandela no está en el soporte de la bisagra, revise para ver si está en la parte inferior de la puerta.

Arandela plástica

Soporte de la bisagra

Antes de reemplazar la rejilla de la base, retire la tapa de la rejilla retirando los tornillos. Atornille la tapa en el lado opuesto.

Reemplace la rejilla de la base insertando los topes de los sujetadores metálicos en los orificios ovalados asegurando que una las pestañas plásticas en la parte posterior de la rejilla entre en cada uno de los orificios ovalados. Luego, presione la base de la rejilla hacia delante hasta que encaje en su lugar.

5TRASLADE EL SOPORTE DE LA BISAGRA CENTRAL HACIA LA

IZQUIERDA

Retire el soporte de la bisagra central retirando los tres tornillos Torx®.

NOTA: Conserve estos tornillos con el soporte de la bisagra. Estos son tornillos largos y se usarán al instalar la bisagra en el otro lado.

En algunos modelos, deberá retirar la tapa de color de la cabeza del tornillo antes de poder retirar el tornillo. Use el borde de un destornillador de pala plana para apalancar levemente las tapas para retirarlas de las cabezas de los tornillos. (Un cuchillo de masilla sirve para esto.) Cubra la pala con cinta para evitar raspar la pintura.

Retire los tres tornillos Torx® del costado izquierdo central del gabinete. Atorníllelos en los orificios del costado derecho.

Coloque el soporte de la bisagra central sobre los orificios en el costado izquierdo central del gabinete. Inserte y apriete los tres tornillos largos.

Reemplace la tapa calzándola en su lugar con el dedo encima del tornillo.

Tapa del tornillo

6TRASLADE LOS TOPES

DE LA PUERTA

En cada puerta, mueva el tope metálico del extremo derecho al izquierdo.

Mueva cualquier tornillo del extremo izquierdo hacia el extremo derecho.

Tope de

Tope de

la puerta

la puerta

Extremo izquierdo

Extremo derecho

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GE MODELS 18 AND 19 installation instructions Izquierda, Traslade LOS Topes DE LA Puerta

MODELS 18 AND 19 specifications

The GE Models 18 and 19, developed by General Electric, represent significant advancements in the realm of gas turbine technology, particularly for power generation applications. Catering to the needs of utility companies and industrial users, these models stand out due to their robust design, efficiency, and reliability.

The GE Model 18, introduced in the mid-20th century, utilizes a simple yet effective gas turbine architecture. It operates on a basic Brayton cycle, forming the foundation for subsequent turbine designs. A key feature of the Model 18 is its high-pressure ratio, which allows for enhanced thermal efficiency compared to earlier models. The turbine is designed with multipoint fuel injection systems that improve combustion performance by providing a more uniform fuel distribution. Additionally, the Model 18 features advanced cooling techniques, such as air-cooled components and advanced materials that withstand high temperatures, helping to prolong the operational life of the turbine.

On the other hand, the GE Model 19 built upon the successes of its predecessor and introduced several innovative technologies. One of its standout features is its capacity for variable turbine geometry, which optimizes performance across a wide range of operating conditions. This adjustment allows the turbine to achieve higher efficiency during part-load operations, a crucial capability in today's energy market where demand can fluctuate significantly.

The Model 19 also integrates state-of-the-art control systems that enhance operational reliability and efficiency. These sophisticated systems allow for precise monitoring and adjustments to combustion parameters, reducing emissions and improving fuel consumption. Furthermore, the utilization of advanced digital technology aids in predictive maintenance, allowing operators to proactively address potential issues before they escalate into costly downtimes.

Both models feature a modular design, making maintenance and upgrades simpler and more efficient. This design philosophy reduces the time required for servicing, enabling plants to maintain higher availability and productivity. Moreover, the robust construction of the turbines ensures durability and performance even in challenging environments.

In summary, the GE Models 18 and 19 embody a blend of reliability, efficiency, and advanced technology, positioning them as vital assets in the generation of power. With features that cater to evolving energy demands and sustainability goals, these turbine models continue to play a significant role in the energy sector.