Westinghouse W-004 owner manual Blocage C

Page 6

FIGURE 1.

*BOITE DE SORTIE DE COURANT (E)

 

FIL DE MISE

 

A LA TERRE

CONNECTEURS

ECROU (D)

 

DE FIL (G)

RONDELLE DE

 

 

BLOCAGE (C)

BARRE DE

FIXATION (B)

*VIS DE LA BOITE DE SORTIE DE COURANT (F)

TROU

LATERAL (I)

PANNEAU

LATERAUX (P)

SUPPORTS DE

PANNEAU (O)

VIS DE MISE A LA TERRE (VERTE) (H)

MANCHON

 

FILETE (A)

CHAPEAU (J)

 

RONDELLE (K)

ECROU

CAPUCHON (L)

PANNEAU

LATERAUX (P)

CAGE DE

L’APPAREIL

D’ECLAIRAGE (N)

 

RAINURES DU COIN

 

INTERIEUR (O)

PANNEAU

 

CARRE (M)

VIS (R)

Il est possible que le dessin illustré ici ne soit pas la reproduction exacte

de l’appareil d’éclairage contenu dans la boîte.*NON FOURNI Les instructions d’installation demeurent cependant valables.

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Image 6
Contents Outdoor Lighting Fixture Installation Instructions Warranty Information Electrical Shock can Result in Serious InjuryLine art shown may not exactly match the fixture enclosed Mounting and Wiring Instructions Fixture Assembly InstructionsGarantie Limitée DE Cinq ANS Blocage C Instructions DE Montage ET DE Raccordement Instructions D’ASSEMBLAGE DE Lappareil DéclairageGarantía Limitada DE Cinco Años Advertencia UNA Descarga Eléctrica Podría Causar LesionesFigura Instrucciones DE Montaje Y Cableado Instrucciones DE Montaje DEL ArtefactoMise EN Garde Group aOrdering Parts Cleaning and CareCommande DE Pièces Nettoyage ET Entretien

W-004 specifications

The Westinghouse W-004 is a next-generation nuclear power reactor designed to enhance energy production while prioritizing safety and efficiency. As part of the Westinghouse family of reactors, it integrates advanced technologies that meet the growing demands for reliable and sustainable energy sources.

One of the key features of the W-004 reactor is its pressurized water reactor (PWR) design, which utilizes water as both a coolant and a moderator. This configuration allows for efficient heat transfer while maintaining a stable reactor core. The W-004 is engineered to operate at a higher thermal efficiency compared to traditional reactors, resulting in lower operational costs and reduced emissions.

Safety is a paramount concern in nuclear reactor design, and the W-004 incorporates several innovative safety features. The reactor is equipped with a passive safety system that relies on natural forces, such as gravity and convection, to maintain cooling without the need for active mechanical systems. This design drastically lowers the risk of accidents and ensures that the reactor can safely shut down in case of emergency.

The W-004 also takes advantage of advanced digital instrumentation and control systems. These systems enhance monitoring and management of reactor operations with real-time data analytics, ensuring optimal performance and quick response times in emergency situations. The integration of digital technologies allows for better decision-making processes and greater operational flexibility.

In terms of fuel technology, the W-004 utilizes low-enriched uranium (LEU) fuel, which has been developed to maximize fuel efficiency and minimize waste. The reactor's design allows for longer refueling cycles, further increasing its operational efficiency and reducing downtime.

Moreover, the Westinghouse W-004 is designed to be modular, allowing for easier installation and scalability. This aspect makes it an attractive option for both new installations and upgrades to existing facilities, catering to a diverse range of energy needs.

With the global push toward cleaner energy, the Westinghouse W-004 stands out as a viable solution for sustainable electricity generation. Its state-of-the-art technologies, robust safety features, and impressive efficiency make it a significant player in the future of nuclear energy, embodying a balance between power production and environmental responsibility. As energy demands continue to rise, the W-004 can play an essential role in supporting a clean and sustainable energy future.