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首页> 外文期刊>EPJ Web of Conferences >RESONANCE SELF-SHIELDING CALCULATION FOR PLATE-TYPE FUEL ASSEMBLIES
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RESONANCE SELF-SHIELDING CALCULATION FOR PLATE-TYPE FUEL ASSEMBLIES

机译:板式燃料组件的共振自屏蔽计算

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Owing to its ability to handle arbitrary geometry and high computation efficiency, subgroup method is a widely used resonance self-shielding method. Ordinarily, the subgroup parameters are generated from homogenous resonance integral tables, and then can be used to calculate heterogeneous problems via the equivalence theory. However, it cannot provide accurate results especially for the plate-type assemblies with strong heterogeneity. What’s more, the fuel enrichment in plate-type assemblies is relatively much higher than the common rod-type ones. As a result, the resonance interference effect in plate-type fuels is particularly intense. To solve this problem and to provide accurate effective self-shielded cross-sections for plate-type fuel assemblies, 1-D plate problems are used to generate subgroup parameters. In order to deal with resonance interference, the resonance interference factors are generated by equivalent homogenous problems solved by 0-D hyperfine group solver. To avoid the computational burden caused by too many hyperfine group calculations, the importance of resonance isotopes is calculated in advance to select important resonance isotopes. Important and non-important ones are handled by different ways respectively. JRR-3M plate-type assemblies are used to test the newly method. Numerical results show that the relative errors of effective self-shielded cross-sections are generally less than 1.5% compared with the reference.
机译:由于其处理任意几何和高计算效率的能力,子组方法是一种广泛使用的谐振自屏蔽方法。通常,子组参数由均匀的共振积分表产生,然后可用于通过等价理论计算异构问题。然而,它不能提供特别是对于具有强异质性的板式组件来提供准确的结果。更重要的是,板式组件中的燃料富集比普通杆型更高。结果,板式燃料中的共振干扰效果特别强烈。为了解决这个问题并为板式燃料组件提供准确的有效的自屏蔽横截面,使用1-D板问题来产生子组参数。为了处理共振干扰,共振干扰因子由0-D高细群求解器解决的等效均匀问题产生。为了避免由过分血清群计算引起的计算负担,预先计算共振同位素的重要性以选择重要的共振同位素。重要和非重要性分别由不同的方式处理。 JRR-3M板式组件用于测试新方法。数字结果表明,与参考相比,有效自屏横截面的相对误差通常小于1.5%。

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