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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Shielding data for 100-250 MeV proton accelerators: Attenuation of secondary radiation in thick iron and concrete/iron shields
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Shielding data for 100-250 MeV proton accelerators: Attenuation of secondary radiation in thick iron and concrete/iron shields

机译:100-250 MeV质子加速器的屏蔽数据:厚铁和混凝土/铁屏蔽层中的二次辐射衰减

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摘要

Double differential distributions of neutrons produced by 100, 150, 200 and 250 MeV protons stopped in a thick iron target were calculated with the FLUKA Monte Carlo code at four emission angles: forward, 45°, transverse and 135° backwards. The attenuation in thick iron shields of the dose equivalent due to neutrons, protons, photons and electrons was also calculated. The contribution to the total ambient dose equivalent from photons and protons is limited to a few percent at maximum. Source terms and attenuation lengths are given as a function of energy and emission angle, along with fits to the Monte Carlo data, for shallow depth and deep penetration in the shield. A brief discussion of simulations performed with composite iron/concrete shields is also given, showing the need for further investigations.
机译:用FLUKA蒙特卡洛法则以四个发射角:正向,45°,横向和后向135°计算了停在厚铁靶中的100、150、200和250 MeV质子产生的中子的双微分分布。还计算了由中子,质子,光子和电子引起的等效剂量在厚铁罩中的衰减。光子和质子对总环境剂量当量的贡献最大限制为百分之几。源项和衰减长度是能量和发射角的函数,以及对蒙特卡罗数据的拟合,用于浅层深度和深层穿透。还简要讨论了用复合铁/混凝土屏蔽板进行的模拟,表明需要进一步研究。

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