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首页> 外文期刊>Annals of nuclear energy >Advanced Bondarenko method for resonance self-shielding calculations in deterministic reactor physics code system CBZ
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Advanced Bondarenko method for resonance self-shielding calculations in deterministic reactor physics code system CBZ

机译:确定性反应堆物理代码系统CBZ中用于共振自屏蔽计算的高级Bondarenko方法

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摘要

The advanced Bondarenko method for resonance self-shielding calculations is devised and proposed. This method is based on three numerical methods; the Bell factor optimization for accurate fuel escape probability representation, extension of resonance interference factors and correction factors for current-weighted total cross sections. A 107-group library for light water reactor applications based on the advanced Bondarenko method is generated for a reactor physics code system CBZ. Performance of the CBZ code with this 107-group library is examined against a suit of light water reactor cell problems. The infinite neutron multiplication factors calculated with CBZ agree with reference continuous-energy Monte Carlo solutions within 0.15%Delta k/kk' differences, and no significant biases on fuel compositions and geometrical specifications are observed. Energy-averaged cross sections are also examined. Numerical tests reveal that significant accuracy improvements in resonance self-shielding calculations are realized by adopting the advanced Bondarenko method without any significant increase of computational burden. (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计并提出了先进的邦达连科方法进行共振自屏蔽计算。该方法基于三种数值方法。 Bell因子优化可准确表示燃料逸出概率,并扩展电流干扰总横截面的共振干扰因子和校正因子。为反应堆物理代码系统CBZ生成了基于先进的Bondarenko方法的轻水反应堆应用的107组库。针对一组轻水反应堆电池问题,检查了使用此107组库的CBZ代码的性能。用CBZ计算的无限中子倍增因子与参考连续能蒙特卡罗解决方案相差在0.15%Delta k / kk'之内,并且未观察到燃料成分和几何规格的明显偏差。还检查了能量平均的横截面。数值测试表明,采用先进的邦达连科方法可以显着提高谐振自屏蔽计算的精度,而不会显着增加计算负担。 (C)2016 Elsevier Ltd.保留所有权利。

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