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Predicting induced radioactivity for the accelerator operations at the Taiwan photon source
Journal article   Peer reviewed

Predicting induced radioactivity for the accelerator operations at the Taiwan photon source

R.J. Sheu and S.H. Jiang
Health Physics, Vol.99(6), pp.788-799
12/2010

Abstract

electron storage ring environmental impact Monte Carlo waste management
This study investigates the characteristics of induced radioactivity due to the operations of a 3-GeV electron accelerator at the Taiwan Photon Source (TPS). According to the beam loss analysis, the authors set two representative irradiation conditions for the activation analysis. The FLUKA Monte Carlo code has been used to predict the isotope inventories, residual activities, and remanent dose rates as a function of time. The calculation model itself is simple but conservative for the evaluation of induced radioactivity in a light source facility. This study highlights the importance of beam loss scenarios and demonstrates the great advantage of using FLUKA in comparing the predicted radioactivity with corresponding regulatory limits. The calculated results lead to the conclusion that, due to fairly low electron consumption, the radioactivity induced in the accelerator components and surrounding concrete walls of the TPS is rather moderate and manageable, while the possible activation of air and cooling water in the tunnel and their environmental releases are negligible. Copyright © 2010 Health Physics Society.

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