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Analysis of the radiation shielding of the bunker of a 230 MeV proton cyclotron therapy facility; comparison of analytical and Monte Carlo techniques

机译:分析230 MeV质子回旋加速器治疗设备的掩体的辐射屏蔽;分析和蒙特卡洛技术的比较

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摘要

The neutron ambient dose equivalent outside the radiation shield of a proton therapy cyclotron vault is estimated using the unshielded dose equivalent rates and the attenuation lengths obtained from the literature and by simulations carried out with the FLUKA Monte Carlo radiation transport code. The source terms derived from the literature and that obtained from the FLUKA calculations differ by a factor of 2-3, while the attenuation lengths obtained from the literature differ by 20-40%. The instantaneous dose equivalent rates outside the shield differ by a few orders of magnitude, not only in comparison with the Monte Carlo simulation results, but also with the results obtained by line of sight attenuation calculations with the different parameters obtained from the literature. The attenuation of neutrons caused by the presence of bulk iron, such as magnet yokes is expected to reduce the dose equivalent by as much as a couple of orders of magnitude outside the shield walls. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用从文献中获得的未屏蔽剂量当量率和衰减长度,以及通过使用FLUKA蒙特卡洛辐射传输代码进行的模拟,可以估算质子治疗回旋加速器穹顶辐射屏蔽之外的中子环境剂量当量。从文献中获得的源项和从FLUKA计算中获得的源项相差2-3倍,而从文献中获得的衰减长度相差20-40%。屏蔽层外部的瞬时剂量当量率相差几个数量级,不仅与蒙特卡罗模拟结果相比较,而且与通过视线衰减计算获得的结果以及从文献中获得的不同参数相比也是如此。预期由散装铁(例如磁轭)的存在引起的中子衰减将使等效剂量的剂量等效量减少多达两个数量级,达到屏蔽壁之外。 (C)2016 Elsevier Ltd.保留所有权利。

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