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首页> 外文期刊>Nuclear Technology >METHOD FOR ANALYZING FISSION GAS RELEASE IN FUEL RODS BASED ON GAMMA-RAY MEASUREMENTS OF SHORT-LIVED FISSION PRODUCTS
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METHOD FOR ANALYZING FISSION GAS RELEASE IN FUEL RODS BASED ON GAMMA-RAY MEASUREMENTS OF SHORT-LIVED FISSION PRODUCTS

机译:基于短时裂变产物γ射线测量的燃油中裂隙气体释放量分析方法

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摘要

Fission gases are produced as a result of fission reactions in nuclear fuel. Most of these gases remain trapped within the fuel pellets, but some may be released to the fuel rod internal gas volume under certain conditions. This phenomenon of fission gas release is important for fuel performance since the released gases can degrade the thermal properties of the fuel rod fill gas and contribute to increasing fuel rod internal pressure. Various destructive and nondestructive methods are available for determining the amount of fission gas release; however, the current methods are primarily useful for determining the integrated fission gas release fraction, i.e., the amount of fission gas produced in the fuel that has been released to the free rod volume over the entire lifetime of a nuclear fuel rod. In this work, a method is proposed for determining the fission gas release that occurs during short irradiation sequences. The proposed method is based on spec-troscopic measurements of gamma rays emitted in the decay of short-lived fission gas isotopes. Determining such sequence-specific fission gas release can be of interest when evaluating the fuel behavior for selected times during irradiation, such as during power ramps. The data obtained in this type of measurement may also be useful for investigating the mechanisms behind fission gas release for fuel at high burnup. The method is demonstrated based on the analysis of experimental gamma-ray spectra previously collected using equipment not dedicated for this purpose; however, the analysis indicates the feasibility of the method. Further evaluation of the method is planned, using dedicated equipment at the Halden Boiling Water Reactor.
机译:裂变气体是核燃料中裂变反应的结果。这些气体大多数保留在燃料芯块内,但在某些条件下可能会释放到燃料棒的内部气体体积中。裂变气体释放的现象对于燃料性能很重要,因为释放的气体会降低燃料棒填充气体的热性能,并有助于增加燃料棒的内部压力。有多种破坏性和非破坏性方法可用于确定裂变气体的释放量。然而,当前的方法主要用于确定总的裂变气体释放分数,即,在核燃料棒的整个寿命中已经释放到自由棒体积的燃料中产生的裂变气体的量。在这项工作中,提出了一种用于确定在短照射序列期间发生的裂变气体释放的方法。所提出的方法是基于对短寿命裂变气体同位素的衰变中发射的伽玛射线的光谱测量。在评估辐射期间(例如功率上升期间)的选定时间的燃料行为时,确定此类特定于序列的裂变气体释放可能会很重要。在这种类型的测量中获得的数据对于研究高燃耗时裂变气体释放燃料的机理也可能有用。该方法是基于对以前使用非专用仪器收集的实验性伽马射线光谱的分析证明的;然而,分析表明该方法的可行性。已计划在Halden沸水反应堆中使用专用设备对该方法进行进一步评估。

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