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Solid Radioactive Waste Strategy Report.pdf - UK EPR

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<strong>EPR</strong> <strong>UK</strong><br />

N° NESH-G/2008/en/0123<br />

REV. A PAGE 248 / 257<br />

14.1.2 Guides<br />

The following safety guides are used for the transport of radioactive material:<br />

· Guide to an Application for <strong>UK</strong> Competent Authority Approval of <strong>Radioactive</strong> Material<br />

in Transport, Department of the Environment, Transport and the Regions, January<br />

2001;<br />

· Safety Guides N° TS-G-1-1, “Advisory Material for safe Transport of <strong>Radioactive</strong><br />

Materials”, International Atomic Energy Agency (IAEA), Edition 2002.<br />

14.2 <strong>Waste</strong> And Spent Fuel Transport Arrangements<br />

14.2.1 <strong>Waste</strong> Package Transportation<br />

TNI has also developed and implemented various solutions for nuclear waste packages<br />

which require specific transportation arrangements.<br />

The following are examples of suitable containers for different types of irradiated waste.<br />

Other types of packages, which also comply with international transport regulations could be<br />

chosen by a utility.<br />

14.2.2 Spent Fuel Transportation<br />

For the transport of spent fuel offsite, an IAEA type (B) transport container is required.<br />

TN International (TNI) has already designed and implemented various solutions that comply<br />

with transport regulations. With reference to the specific case of <strong>EPR</strong> spent fuel, the first<br />

solution that would be considered would be the TN-DUO type transport and storage cask,<br />

described earlier in this document, which is a storage solution compatible with transport<br />

requirements. It is important to note that other types of package designs may be employed.<br />

For transportation purposes only, TNI has designed and implemented a number of<br />

transportation casks which have been routinely used since the 1980s. More than 200<br />

transports of spent fuel are undertaken every year in Europe.<br />

As shown below, the TN TM 13-2 cask can be adapted for the carriage of <strong>EPR</strong> spent fuel.<br />

Main design characteristics<br />

of the TN TM 13-2:<br />

Overall length with shock absorbers: 6670 mm<br />

Maximum diameter with trunnions:2500 mm<br />

Maximum weight loaded with shock absorbers: 113.5 tons<br />

Internal diameter of the cavity: 1220 mm<br />

Weight empty: 103.4 tons<br />

Pay-load: 12 PWR 15x15 or 17x17 (reactor 1300 or 1450 MW)

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