首页> 外文会议>ASME international mechanical engineering congress and exposition >APPLICATION OF ADVANCED MODEL OF ZR-BASED CLADDING OXIDATION IN STEAM-OXYGEN-NITROGEN GAS MIXTURES TO SEPARATE EFFECTS TESTS AND INTEGRAL EXPERIMENTS
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APPLICATION OF ADVANCED MODEL OF ZR-BASED CLADDING OXIDATION IN STEAM-OXYGEN-NITROGEN GAS MIXTURES TO SEPARATE EFFECTS TESTS AND INTEGRAL EXPERIMENTS

机译:基于ZR的包层氧化的先进模型在蒸汽-氧气-氮气混合气体中的应用分离效果测试和积分实验。

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During postulated design-basis or beyond-design-basis accident at nuclear power plant with PWR or BWR, the high temperature oxidation of Zr-based fuel claddings in H_2O-O_2-N_2 gas atmosphere could take place. Recent experimental observations showed that the oxidation of those claddings in the air (or, more generally, in oxygen-nitrogen and steam-nitrogen mixtures) behaves in much more aggressive way (linear or enhanced parabolic kinetics) compared to oxidation in pure steam (standard parabolic kinetics). This is why an advanced model of Zr-based cladding oxidation was developed. For calculations of cladding oxidation in oxygen-nitrogen and steam-nitrogen mixtures, the effective oxygen diffusion coefficient in ZrO_2+ZrN layer formed in cladding is used. The diffusion coefficient enhancement factor depends on ZrN content in ZrO_2+ZrN layer. A numerical scheme was realized to determine ZrO_2+ZrN/α-Zr(O) and α-Zr(O)/β-Zr layers boundaries relocation and layers transformations in claddings. The model was implemented to the SOCRAT best estimate computer modeling code. The SOCRAT code with advanced model of oxidation was successfully used for calculations of separate effects tests and air ingress integral experiments QUENCH-10, QUENCH-16 and PARAMETER-SF4.
机译:在假定具有压水堆或压水堆的核电站设计基准或超设计基准事故期间,H_2O-O_2-N_2气体气氛中Zr基燃料包壳可能发生高温氧化。最近的实验观察表明,与纯蒸汽(标准气体)中的氧化相比,空气中(或更普遍地,在氧气-氮气和蒸汽-氮气混合物中)这些覆层的氧化行为更具侵略性(线性或增强的抛物线动力学)。抛物线动力学)。这就是为什么要开发基于Zr的熔覆层氧化高级模型的原因。为了计算氧气-氮气和蒸汽-氮气混合物中的包层氧化,使用了在包层中形成的ZrO_2 + ZrN层中的有效氧扩散系数。扩散系数增强因子取决于ZrO_2 + ZrN层中的ZrN含量。实现了确定ZrO_2 + ZrN /α-Zr(O)和α-Zr(O)/β-Zr层边界重定位和包层中层转换的数值方案。该模型已实现为SOCRAT最佳估计计算机建模代码。具有高级氧化模型的SOCRAT代码已成功用于计算单独的效果测试和进气积分实验QUENCH-10,QUENCH-16和PARAMETER-SF4。

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