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首页> 外文期刊>IEEE Transactions on Nuclear Science >An experimental comparison of in-situ gamma spectrometric methods for quantifying Cs-137 radioactive contamination in the ground
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An experimental comparison of in-situ gamma spectrometric methods for quantifying Cs-137 radioactive contamination in the ground

机译:原位伽马能谱法定量定量地面中Cs-137放射性污染的实验比较

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摘要

In-situ gamma spectrometry is a potentially powerful method for rapid quantification of radioactive contamination in the ground using an above-ground detector. The accuracy of the technique, however, depends on having information on the activity variation with depth. Three methods have previously been proposed for deriving this information using information obtained in the field. This paper describes these methods and models used to approximate activity-depth distributions and presents an experimental comparison for a range of sites of differing activity concentrations and sources of contamination. It was found that the Lead Plate Method in conjunction with a modified gaussian activity distribution model gave the best results estimating activity concentrations on average to within a factor of 1.5 of the true value.
机译:原位伽马能谱分析法是一种潜在的强大方法,可使用地上探测器对地面中的放射性污染物进行快速定量。然而,该技术的准确性取决于具有关于活动随深度变化的信息。先前已经提出了三种方法来使用在现场获得的信息来推导该信息。本文介绍了用于估算活动深度分布的这些方法和模型,并针对不同活动浓度和污染源的范围进行了实验比较。已经发现,铅板法与改进的高斯活性分布模型相结合,可以提供最佳的结果,将平均浓度估计在真实值的1.5范围内。

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