Luszik-Bhadra M, Bartlett D, Bolognese-Milsztajn T, Boschung M, Coeck M, Curzio G, d'Errico F, Fiechtner A, Lacoste V, Lindborg L, Reginatto M, Schuhmacher H, Tanner R, Vanhavere F
Physikalisch-Technische Bundesanstalt, Bundesallee 100, D-38116 Braunschweig, Germany.
Radiat Prot Dosimetry. 2007;124(3):219-29. doi: 10.1093/rpd/ncm419. Epub 2007 Sep 23.
Within the EC project EVIDOS, 17 different mixed neutron-photon workplace fields at nuclear facilities (boiling water reactor, pressurised water reactor, research reactor, fuel processing, storage of spent fuel) were characterised using conventional Bonner sphere spectrometry and newly developed direction spectrometers. The results of the analysis, using Bayesian parameter estimation methods and different unfolding codes, some of them especially adapted to simultaneously unfold energy and direction distributions of the neutron fluence, showed that neutron spectra differed strongly at the different places, both in energy and direction distribution. The implication of the results for the determination of reference values for radiation protection quantities (ambient dose equivalent, personal dose equivalent and effective dose) and the related uncertainties are discussed.
在欧盟委员会的EVIDOS项目中,利用传统的邦纳球谱仪和新开发的方向谱仪,对核设施(沸水反应堆、压水反应堆、研究反应堆、燃料加工、乏燃料储存)中的17种不同的混合中子 - 光子工作场所场进行了表征。使用贝叶斯参数估计方法和不同的解谱代码(其中一些特别适用于同时解谱中子注量的能量和方向分布)进行分析的结果表明,不同场所的中子能谱在能量和方向分布上均有很大差异。讨论了这些结果对确定辐射防护量(环境剂量当量、个人剂量当量和有效剂量)参考值及其相关不确定性的影响。