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首页> 外文期刊>Annals of nuclear energy >Reactivity and neutron emission measurements of highly burnt PWR fuel rod samples
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Reactivity and neutron emission measurements of highly burnt PWR fuel rod samples

机译:高燃烧压水堆燃料棒样品的反应性和中子排放测量

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Fuel rods with burnup values beyond 50 GWd/t are characterised by relatively large amounts of fission products and a high abundance of major and minor actinides. Of particular interest is the change in the reactivity of the fuel as a function of burnup and the capability of modern codes to predict this change. In addition, the neutron emission from burnt fuel has important implications for the design of transport and storage facilities. Measurements have been made of the reactivity effects and the neutron emission rates of highly burnt uranium oxide and mixed oxide fuel rod samples coming from a pressurised water reactor (PWR). The reactivity measurements have been made in a PWR lattice in the PROTEUS zero-energy reactor moderated in turn with: water, a water and heavy water mixture and water containing boron. A combined transport flask and sample changer was used to insert the 400 mm long burnt fuel rod segments into the reactor. Both control rod compensation and reactor period methods were used to determine the reactivities of the samples. For the range of burnup values investigated, an interesting exponential relationship has been found between the neutron emission rate and the measured reactivity.
机译:燃耗值超过50 GWd / t的燃料棒的特点是裂变产物相对较多,主要和次要act系元素含量很高。特别令人感兴趣的是燃料反应性随燃耗的变化以及现代规范预测这种变化的能力。此外,燃烧燃料产生的中子排放对运输和存储设施的设计也具有重要意义。已对来自压水堆(PWR)的高度燃烧的氧化铀和混合氧化物燃料棒样品的反应活性和中子发射率进行了测量。反应性测量是在PROTEUS零能反应器中的PWR晶格中进行的,依次进行调节:水,水和重水的混合物以及含硼的水。使用组合的运输瓶和样品更换器将400​​毫米长的燃烧过的燃料棒段插入反应器中。控制棒补偿法和反应器周期法均用于确定样品的反应性。对于所研究的燃耗值范围,在中子发射速率和测得的反应性之间发现了有趣的指数关系。

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