首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Monte Carlo simulation of a clearance box monitor used for nuclear power plant decommissioning.
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Monte Carlo simulation of a clearance box monitor used for nuclear power plant decommissioning.

机译:用于核电站退役的间隙监控器的蒙特卡洛模拟。

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When decommissioning a nuclear facility it is important to be able to estimate activity levels of potentially radioactive samples and compare with clearance values defined by regulatory authorities. This paper presents a method of calibrating a clearance box monitor based on practical experimental measurements and Monte Carlo simulations. Adjusting the simulation for experimental data obtained using a simple point source permits the computation of absolute calibration factors for more complex geometries with an accuracy of a bit more than 20%. The uncertainty of the calibration factor can be improved to about 10% when the simulation is used relatively, in direct comparison with a measurement performed in the same geometry but with another nuclide. The simulation can also be used to validate the experimental calibration procedure when the sample is supposed to be homogeneous but the calibration factor is derived from a plate phantom. For more realistic geometries, like a small gravel dumpster, Monte Carlo simulation shows that the calibration factor obtained with a larger homogeneous phantom is correct within about 20%, if sample density is taken as the influencing parameter. Finally, simulation can be used to estimate the effect of a contamination hotspot. The research supporting this paper shows that activity could be largely underestimated in the event of a centrally-located hotspot and overestimated for a peripherally-located hotspot if the sample is assumed to be homogeneously contaminated. This demonstrates the usefulness of being able to complement experimental methods with Monte Carlo simulations in order to estimate calibration factors that cannot be directly measured because of a lack of available material or specific geometries.
机译:使核设施退役时,重要的是能够估计潜在放射性样品的活度水平并与监管机构定义的清除率值进行比较。本文提出了一种基于实际实验测量和蒙特卡洛模拟的校准间隙监测仪的方法。调整使用简单点源获得的实验数据的仿真,可以计算出用于更复杂几何形状的绝对校准因子,其准确度略高于20%。与在相同几何形状但用另一个核素进行的测量直接比较时,相对使用模拟时,可以将校准因子的不确定度提高到大约10%。当样品被认为是均质的,但是校准因子是从板体模型导出的,该模拟也可以用于验证实验校准程序。对于更现实的几何形状(例如小碎石场),蒙特卡洛模拟显示,如果将样品密度作为影响参数,则使用较大的均质体模获得的校准系数在20%左右是正确的。最后,可以使用模拟来估计污染热点的影响。支持本文的研究表明,如果样品位于中心位置,则活动可能会大大低估,而位于中心位置的热点可能会高估活动。这证明了能够用蒙特卡洛模拟来补充实验方法的有用性,以估算由于缺乏可用材料或特定几何形状而无法直接测量的校准因子。

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