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Source terms and attenuation lengths for estimating shielding requirements or dose analyses of proton therapy accelerators
Journal article   Peer reviewed

Source terms and attenuation lengths for estimating shielding requirements or dose analyses of proton therapy accelerators

Rong-Jiun Sheu, Bo-Lun Lai, Uei-Tyng Lin and Shiang-Huei Jiang
Health Physics, Vol.105(2), pp.128-139
08/2013

Abstract

accelerators, medical attenuation Monte Carlo shielding
Proton therapy accelerators in the energy range of 100-300 MeV could potentially produce intense secondary radiation, which must be carefully evaluated and shielded for the purpose of radiation safety in a densely populated hospital. Monte Carlo simulations are generally the most accurate method for accelerator shielding design. However, simplified approaches such as the commonly used point-source line-of-sight model are usually preferable on many practical occasions, especially for scoping shielding design or quick sensitivity studies. This work provides a set of reliable shielding data with reasonable coverage of common target and shielding materials for 100-300 MeV proton accelerators. The shielding data, including source terms and attenuation lengths, were derived from a consistent curve fitting process of a number of depth-dose distributions within the shield, which were systematically calculated by using MCNPX for various beam-target shield configurations. The general characteristics and qualities of this data set are presented. Possible applications in cases of single- and double-layer shielding are considered and demonstrated. Copyright © 2013 Health Physics Society.

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