Muon radiography to visualise individual fuel rods in sealed casks

Author:

Braunroth Thomas,Berner Nadine,Rowold Florian,Péridis Marc,Stuke Maik

Abstract

Cosmic-ray muons can be used for the non-destructive imaging of spent nuclear fuel in sealed dry storage casks. The scattering data of the muons after traversing provides information on the thereby penetrated materials. Based on these properties, we investigate and discuss the theoretical feasibility of detecting single missing fuel rods in a sealed cask for the first time. We perform simulations of a vertically standing generic cask model loaded with fuel assemblies from a pressurized water reactor and muon detectors placed above and below the cask. By analysing the scattering angles and applying a significance ratio based on the Kolmogorov-Smirnov test statistic we conclude that missing rods can be reliably identified in a reasonable measuring time period depending on their position in the assembly and cask, and on the angular acceptance criterion of the primary, incoming muons.

Funder

Federal Ministry for the Environment, Nature Conservation and Nuclear Safety in Germany

Publisher

EDP Sciences

Reference40 articles.

1. Ziock K.-P., Caffrey G., Lebrun A., Forman L., Vanier P., Wharton J., IEEE Nuclear Science Symposium Conference Record, 2005, Fajardo, 2005, pp. 1163–1167

2. Antineutrino Monitoring of Spent Nuclear Fuel

3. Applications of cosmic-ray muons

4. Review of Particle Physics

5. Absolute spectrum and charge ratio of cosmic ray muons in the energy region from 0.2 GeV to 100 GeV at 600 m above sea level

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