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Additional info for Design Measures - Impl. of Safeguards at Future Water-Cooled Nucl. Powerplants (IAEA TRS-392)

Example text

E. fresh fuel storage, fuelling activities and spent fuel storage. Other CANDU power stations are multi-reactor unit stations that share common containment, fresh and spent fuel storage areas, and some aspects of fuelling activities. An example of shared fuelling and storage facilities is the Darlington station in Canada. Examples of ‘stand-alone’ units are Embalse, in Argentina, with one unit at the site, and Wolsong, Republic of Korea, with four units at one site. Both types of stations are under IAEA safeguards.

3. Typical layout of an LWR Type II plant design (SV: surveillance). 3 Type I. g. surveillance in the reactor hall). Most of the LWRs of this type are BWRs, WWERs and PWRs of Siemens design. Type II. g. pool surveillance in the fuel storage building and hatch seal/surveillance in the reactor containment). Most of the LWRs of this type are PWRs other than of Siemens design. The basic concepts of each type of design are illustrated in Figs 2 and 3. At off-load refuelled reactors the C/S measures include applying seals and/or optical surveillance to ensure that there is no undetected opening of the reactor vessel, and the use of optical surveillance to detect diversion from the spent fuel pool or from an open pressure vessel.

GUIDELINES COMMON TO ALL FUTURE WATER COOLED REACTORS Safeguards design needs to achieve a high level of reliability, since loss of continuity of knowledge of safeguards information can require extensive efforts to reestablish inventories of safeguarded material, raise concerns if such inventories 42 cannot be re-established to desired accuracies, and have an adverse impact on the confidence in the adequacy of safeguards at the facility concerned. General approaches used to achieve high reliability in nuclear power plant design — redundancy, diversity and quality assurance — are also applicable to safeguards design.

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