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Solid-solid conductance in nuclear fuel: An assessment of it in-code models performance

机译:核燃料中的固体-固体电导:代码内性能评估

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In the nuclear industry the preservation of cladding integrity should be always ensured under any expected or unexpected event. Given the current trend towards higher fuel burn-up, conditions of fuel-rod performance are becoming more demanding and, at the same time, safety assessments are moving from a conservative to a best-estimate approach, where more accurate models are used to reduce too large conservative margins. Heat transfer from the fuel rod plays an essential role for an accurate description of fuel performance.rnThe present paper is focused on heat transfer from the fuel to the inner side of the cladding under high burn-up conditions. Fundamentals of fuel-to-dad heat transfer and their implementation in "steady-state" performance codes have been reviewed. Major variables in the process have been identified (burn-up, pressure contact, interfacial temperature, morphology), and the main hypotheses and approximations used in each code to estimate them, have been examined and compared. Finally, model predictions have been compared to experimental data taken from the open literature. Even though the reduced number of data does not allow to settle general conclusions about model performance, substantial discrepancies have been found in their predictions. They have highlighted two important facts: the large scattering of already available data base and the scarcity of data under anticipated high burn-up conditions.
机译:在核工业中,在发生任何预期或意外事件时,应始终确保包层完整性。鉴于当前燃料消耗率更高的趋势,燃料棒性能的条件变得越来越苛刻,同时,安全评估正在从保守的方法转向最佳的估计方法,在此方法中,将使用更准确的模型来减少保守利润率过大。来自燃料棒的热传递对于准确描述燃料性能起着至关重要的作用。本文致力于在高燃耗条件下从燃料到包壳内侧的热传递。燃料到父亲的热传递的基本原理及其在“稳态”性能规范中的实现方式已得到审查。确定了过程中的主要变量(燃耗,压力接触,界面温度,形态),并检查并比较了每个代码中用于估计它们的主要假设和近似值。最后,将模型预测与从公开文献中获得的实验数据进行了比较。即使减少的数据量不能确定关于模型性能的一般结论,但在其预测中仍发现了实质性差异。他们强调了两个重要的事实:已经可用的数据库分散很大,并且在预期的高耗竭条件下数据稀缺。

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