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Application of the MCNPX-McStas interface for shielding calculations and guide design at ESS

机译:应用mCNpX-mcstas接口进行Ess的屏蔽计算和指南设计

摘要

Recently, an interface between the Monte Carlo code MCNPX and the neutron ray-tracing code MCNPX was developed [1, 2]. Based on the expected neutronic performance and guide geometries relevant for the ESS, the combined MCNPX-McStas code is used to calculate dose rates along neutron beam guides. The generation and moderation of neutrons is simulated using a full scale MCNPX model of the ESS target monolith. Upon entering the neutron beam extraction region, the individual neutron states are handed to McStas via the MCNPX-McStas interface. McStas transports the neutrons through the beam guide, and by using newly developed event logging capability, the neutron state parameters corresponding to un-reflected neutrons are recorded at each scattering. This information is handed back to MCNPX where it serves as neutron source input for a second MCNPX simulation. This simulation enables calculation of dose rates in the vicinity of the guide. In addition the logging mechanism is employed to record the scatterings along the guides which is exploited to simulate the supermirror quality requirements (i.e. m-values) needed at different positions along the beam guide to transport neutrons in the same guide/source setup.
机译:最近,开发了蒙特卡罗代码MCNPX和中子射线追踪代码MCNPX之间的接口[1、2]。基于与ESS相关的预期中子性能和导向几何形状,组合的MCNPX-McStas代码用于计算沿中子束导向的剂量率。使用ESS目标整料的全尺寸MCNPX模型模拟中子的产生和缓和。进入中子束提取区域后,各个中子态将通过MCNPX-McStas接口传递给McStas。 McStas通过束波导传输中子,并通过使用新开发的事件记录功能,在每次散射时记录与未反射中子相对应的中子状态参数。该信息被传递回MCNPX,在此用作第二次MCNPX模拟的中子源输入。该模拟使得能够计算导板附近的剂量率。另外,采用测井机制来记录沿波导的散射,该散射被用于模拟沿束波导的不同位置在相同的波导/源设置中传输中子所需的超镜质量要求(即,m值)。

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