Published June 2005 | Version v1
Report

Shaft shock absorber tests for a spent fuel canister

  • 1. Fortum Nuclear Services, Vantaa (Finland)
  • 2. Enprima Oy, Vantaa (Finland)

Description

The disposal canister for spent nuclear fuel will be transferred by a lift to the repository, which is 500 m deep in the bedrock. Model tests were carried out with the objective to estimate weather feasible shock absorber can be developed against the design accident case where the canister should survive a free fall to the lift shaft. If the velocity of the canister is not controlled by air drag or by any other deceleration means, the impact velocity may reach ultimate speed of 100m/s. The canister would retain its integrity in impact on water when the bottom pit of the lift well is filled with groundwater. However, the canister would hit the pit bottom with high velocity since the water hardly slows down the canister. The impact to the bottom of the pit should be dampened mechanically. The tests demonstrated that 20 m high filling to the bottom pit of the lift well by Light Expanded Clay Aggregate (LECA), gives fair impact absorption to protect the fuel canister. Presence of ground water is not harmful for impact absorption system provided that the ceramic gravel is not floating too high from the pit bottom. Almost ideal impact absorption conditions are met if the water high level does not exceed two thirds of the height of the gravel. Shaping of the bottom head of the cylindrical canister does not give meaningful advantages to the impact absorption system. The flat nose bottom head of the fuel canister gives adequate deceleration properties. (orig.)

Availability note (English)

Available as a soft back edition from Posiva Oy, Toeoeloenkatu 4, FIN-00100 Helsinki, Finland, tel. +358-9-228030

Additional details

Identifiers

Publishing Information

Imprint Pagination
42 p.
Report number
POSIVA-WR--05-22

INIS