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Measurement of fission rate ratios in fresh UO_2 fuel utilising

机译:利用新鲜UO_2燃料的裂变率比测量

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Determining fission rates via neutron activation is an established technique used in fresh fuel investigations at research reactors. Measuring fission rates in burnt fuel, however, requires the development of new techniques which are able to discriminate against the intense intrinsic gamma activity of the fuel reaching energies up to approximately 2 MeV. The presented study approaches the problem by focussing on the delayed gamma activity in the higher energy region (2-5 MeV). In order to identify suitable gamma-ray lines for this new measurement technique, fresh UO2 pellets have been irradiated and their gamma activity shortly after irradiation has been recorded with an HPGe-detector. It was possible to identify four gamma-ray lines above 2 MeV from which fission rate ratios could be derived with a satisfactory accuracy. Several additional promising gamma-ray lines could be identified but were not further considered because of too poor statistics. Low counting rates in the higher energy region were noted as a major challenge for future experiments. With regard to the envisaged burnt fuel experiments, l38Cs, 142La and 95Y appear to be very promising candidates, showing several prominent gamma-ray lines above 2 MeV and similar high fission yields for both uranium and plutonium fissions.
机译:通过中子活化来确定裂变率是一项用于研究堆新鲜燃料研究的成熟技术。然而,测量燃烧燃料的裂变率需要开发新技术,这些新技术能够区分燃料达到高达2 MeV的能量的强烈的固有伽玛活性。提出的研究通过集中在较高能量区域(2-5 MeV)中的延迟伽马活性来解决该问题。为了确定适合此新测量技术的伽马射线线,已经对新鲜的UO2颗粒进行了辐照,并在辐照后不久用HPGe检测器记录了它们的伽马活性。可以识别出高于2 MeV的4条伽马射线线,可以从这些伽马射线线以令人满意的精度推导裂变率比。可以确定一些其他有前途的伽马射线线,但由于统计数据太差而未进一步考虑。高能量区域的低计数率被认为是未来实验的主要挑战。关于设想的燃烧燃料实验,138Cs,142La和95Y似乎是非常有前途的候选者,显示出2 MeV以上的几条突出的伽马射线谱线以及铀和p裂变的类似高裂变收率。

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