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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Evaluation of Skyshine from an Accelerator Facility: Dependence on Distance and Angle
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Evaluation of Skyshine from an Accelerator Facility: Dependence on Distance and Angle

机译:评价天空照射的加速器设施:依赖距离和角度

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摘要

Neutron skyshine from Linac Coherent Light Source II 4 GeV electron beam operation at SLAC National Accelerator Laboratory can contribute to prompt radiation exposure to the public at distances far beyond the accelerator tunnel housing. One of the shielding design requirements at SLAC is that the annual dose to a member of the public is no more than 0.05 mSv y(-1). This study uses Monte Carlo code FLUKA to simulate the generation of neutrons from 4 GeV electron beam losses on a thick copper target inside a generalized geometry of the Linac Coherent Light Source II Beam Transport Hall accelerator tunnel section. The effective dose from neutron skyshine was characterized as a function of both distance from the tunnel wall (up to 1 km away) and angle relative to the beam direction (between 0 degrees and 180 degrees). This new methodology for evaluating neutron skyshine dose is applicable to high-energy GeV-range electron accelerator facilities both at SLAC and elsewhere.
机译:中子的天空照射二4 GeV电子束在SLAC国家操作加速器实验室有助于提示辐射暴露在公众的距离远加速器隧道以外的住房。屏蔽在SLAC的设计要求年度剂量公众的成员比0.05 mSv y(1)。代码模拟中子的产生丙烯酰胺从4 GeV电子束厚铜损失目标在一个广义几何直线加速器相干光源二梁运输厅加速器隧道部分。从中子天空照射是特点两隧道壁距离的函数(1公里)和角度相对于梁方向(在0度到180度之间)。这个新方法来评估中子天空回散照射剂量适用于高能在GeV-range电子加速器设施线性和其他地方。

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