Congélateurs

www.electromenagersge.ca

Mesures de sécurité . . . . . . . . . . .2–4

Fonctionnement

Caractéristiques . . . . . . . . . . . . . . .5, 6 Directives de dégivrage (modèles

à dégivrage non automatique) . . . . .7 Entretien et nettoyage . . . . . . . . . .8, 9 Mise en marche du congélateur . . . .5

Installation

Préparatifs pour l’installation

du congélateur . . . . . . . . . . . . . . . . 10

Conseils de dépannage . . . . . .11, 12 Caractéristiques normales

de fonctionnement . . . . . . . . . . . . .11

Soutien au consommateur

Garantie . . . . . . . . . . . . . . . . . . . . . . 13 Soutien au consommateur . . . . . . . 14

Numéro de modèle : ______________

Numéro de série : ________________

Ils sont inscrits sur une plaque qui se trouve soit sur la paroi gauche supérieure à l’intérieur (modèles verticaux), soit sur la paroi gauche à l’extérieur (modèles coffre).

Manuel d’utilisation

et d’installation

Modèles verticaux— Dégivrage non automatique :

FUM14

FUM17

FUM21

Modèles verticaux— Sans givre :

FUF14

FUF17

FUF20

Modèles coffre— Dégivrage non automatique :

FCM9

FCM15

FCM20

297037500 162D9627P007 49-6036204-05 JR

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Image 19
GE FCM 7 Manuel d’utilisation Et d’installation, Numéro de modèle Numéro de série, Modèles verticaux- Sans givre

FCM 7 specifications

The General Electric (GE) FCM 7 is a state-of-the-art gas turbine designed for high efficiency and reliability in industrial applications. As part of GE's portfolio of advanced power generation technologies, the FCM 7 represents a significant leap forward in turbine design and operation.

One of the most notable features of the FCM 7 is its advanced aerodynamics. The turbine is engineered with optimized blade shapes that enhance airflow and reduce drag, leading to improved overall performance. This aerodynamic efficiency allows the turbine to achieve a higher thermal efficiency compared to previous models, enabling operators to produce more power using less fuel.

In addition to its aerodynamic design, the FCM 7 incorporates cutting-edge materials technology. The blades and other critical components are constructed from high-temperature superalloys that withstand extreme operating conditions. This material innovation not only increases the turbine’s durability but also extends maintenance intervals, contributing to lower overall operational costs.

The FCM 7 also integrates advanced digital technologies. GE has equipped the turbine with real-time monitoring and predictive maintenance capabilities that utilize data analytics. This allows operators to gain insights into the turbine's performance and condition, making it possible to identify potential issues before they escalate into serious problems. Such predictive capabilities enhance operational reliability and reduce unplanned downtime.

Emissions control is another critical aspect of the FCM 7. The turbine is designed to operate with low nitrogen oxide (NOx) emissions, making it an environmentally friendly choice for power generation. By employing advanced combustion systems, the FCM 7 meets stringent regulatory standards while still delivering robust performance.

Moreover, the FCM 7 is compatible with renewable energy sources, reflecting the industry's shift towards a more sustainable energy mix. It can operate efficiently in combined cycle configurations, making it suitable for both baseload and peak load generation. This flexibility makes the FCM 7 an attractive option for power producers looking to adapt to changing market demands.

In conclusion, the GE FCM 7 gas turbine stands out as a leader in power generation technology. With its advanced aerodynamics, durable materials, digital monitoring capabilities, low emissions, and compatibility with renewable energy, the FCM 7 is designed to meet the challenges of modern energy demands. As industries continue to prioritize efficiency and sustainability, the FCM 7 positions itself as a reliable solution for a brighter energy future.