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Benchmarking shielding simulations for an accelerator-driven spallation neutron source

机译:加速器驱动的散裂中子源的基准屏蔽仿真

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The shielding at an accelerator-driven spallation neutron facility plays a critical role in the performance of the neutron scattering instruments, the overall safety, and the total cost of the facility. Accurate simulation of shielding components is thus key for the design of upcoming facilities, such as the European Spallation Source (ESS), currently in construction in Lund, Sweden. In this paper, we present a comparative study between the measured and the simulated neutron background at the Swiss Spallation Neutron Source (SINQ), at the Paul Scherrer Institute (PSI), Villigen, Switzerland. The measurements were carried out at several positions along the SINQ monolith wall with the neutron dosimeter WENDI-2, which has a well-characterized response up to 5 GeV. The simulations were performed using the Monte-Carlo radiation transport code geant4, and include a complete transport from the proton beam to the measurement locations in a single calculation. An agreement between measurements and simulations is about a factor of 2 for the points where the measured radiation dose is above the background level, which is a satisfactory result for such simulations spanning many energy regimes, different physics processes and transport through several meters of shielding materials. The neutrons contributing to the radiation field emanating from the monolith were confirmed to originate from neutrons with energies above 1 MeV in the target region. The current work validates geant4 as being well suited for deep-shielding calculations at accelerator-based spallation sources. We also extrapolate what the simulated flux levels might imply for short (several tens of meters) instruments at ESS.
机译:加速器驱动的散裂中子设施的屏蔽对中子散射仪器的性能,设施的整体安全性和总成本起着至关重要的作用。因此,对屏蔽组件进行准确的仿真对于设计即将到来的设施至关重要,例如目前正在瑞典隆德建造的欧洲散裂源(ESS)。在本文中,我们将对位于瑞士维利根(Villigen)的Paul Scherrer研究所(PSI)的瑞士散裂中子源(SINQ)的实测和模拟中子背景进行比较研究。使用中子剂量计WENDI-2在沿SINQ整体壁的几个位置进行测量,该中子剂量计的响应度高达5 GeV。使用蒙特卡洛辐射传输代码geant4进行了模拟,并在一次计算中包括了从质子束到测量位置的完整传输。对于所测量的辐射剂量高于背景水平的点,测量与模拟之间的一致性约为2倍,这对于跨越许多能量状态,不同的物理过程以及通过几米的屏蔽材料进行传输的模拟而言,是令人满意的结果。证实了有助于从整体发射出的辐射场的中子源自目标区域中能量高于1 MeV的中子。当前的工作证明geant4非常适合在基于加速器的散裂源中进行深层屏蔽计算。我们还推断出ESS上短(数十米)仪器的模拟通量水平可能意味着什么。

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