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Fuel handling and storage systems

FUEL HANDLING AND STORAGE SYSTEMS Handling and storage of non-irradiated fuel [Pg.44]

The handling and storage sj stems for non-irradiated fuel shall be designed  [Pg.44]

For reactors using a water pool system for fuel storage, the design shall provide [Pg.45]

This subsection should provide relevant information on the fuel handling and storage systems used for fresh fuel as described in paras 3.65-3.70. It should include details of the measures proposed to ensure that fresh fuel is maintained in a safe condition at all times. This should include considerations such as packaging, fuel accounting systems, storage, criticality prevention, fuel integrity control and fuel security. [Pg.38]


The high content of water and emulsifier in this fuel creates some differences in handling and application compared to conventional diesel fuel. The surfactant quality of the emulsification additive in the fuel can remove existing deposits from the internal surfaces of fuel handling and storage systems. Problems with fuel discoloration and fuel filter plugging may follow. Compared with conventional diesel, fuel economy ratings per tank of fuel will drop because the overall carbon content per unit volume of fuel is lower. This is due to carbon displacement by water. [Pg.306]

AR53 Design of fuel handling and storage systems in nuclear power plants, NS-G-1.4, 12 September... [Pg.253]

Waste treatment and control systems (6.90-6.95) Fuel handling and storage systems (6.96-6.98) Radiation protection (6.99-6.106)... [Pg.355]

Radiation Exposure is considered in decision making between Preventive and Corrective Maintenance (Fuel Handling and Storage System)... [Pg.86]

The ISIS fuel handling and storage systems are conventional. Spent fuel removed from the reactor vessel is temporarily stored underwater. The spent fuel racks are located inside the Spent Fuel Storage Pool (SFP) under sufficient water to provide radiological shielding. It can store up to 3 reactor cores. [Pg.441]

Reduced O M costs Elimination of on-site refuelling Fuel handling and storage system to be designed. [Pg.328]

A design for safe operation of spent fuel handling and storage systems should include the following ... [Pg.14]

INTERNATIONAL ATOMIC ENERGY AGENCY, Fuel Handling and Storage Systems in Nuclear Power Plants A Safety Guide, Safety Series No. 50-SG-D10, IAEA, Vienna (1984). [Pg.31]

Figure XIV-3 is a representation of the fuel handling and storage system. The fuelling system has 3 feeding and 3 defuelling points. The operating pressure is up to 9 MPa with a temperature of 20 to 260°C. The fuel storage capacity includes 8 spent fuel tanks with a total spent fuel storage capacity of 6 000 000 spheres. The spent fuel storage period is up to 80 years. Figure XIV-3 is a representation of the fuel handling and storage system. The fuelling system has 3 feeding and 3 defuelling points. The operating pressure is up to 9 MPa with a temperature of 20 to 260°C. The fuel storage capacity includes 8 spent fuel tanks with a total spent fuel storage capacity of 6 000 000 spheres. The spent fuel storage period is up to 80 years.
Criterion 80. Fuel handling and storage systems Fuel handling and storage systems for irradiated and noniiradiated fuel shall be designed to maintain doses to operators ALARA. [Pg.463]


See other pages where Fuel handling and storage systems is mentioned: [Pg.284]    [Pg.14]    [Pg.311]    [Pg.113]    [Pg.441]    [Pg.181]    [Pg.182]    [Pg.67]    [Pg.104]    [Pg.463]    [Pg.2]    [Pg.13]    [Pg.14]    [Pg.173]    [Pg.428]    [Pg.435]    [Pg.38]    [Pg.38]    [Pg.38]    [Pg.500]    [Pg.1]   


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