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RESONANCE CALCULATION CODE UFOP BASED ON THE HYPER-FINE GROUP NEUTRON RESONANCE CALCULATION METHOD

机译:基于超细群中子谐振计算方法的谐振计算码UFOP

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Resonance self-shielding calculation is very important in reactor physics calculation. Conventional resonance calculation method has some fundamental defects, which hinders its application in some problems. The Hyperfine Energy Group Resonance Calculation Method is studied in this paper and a code named UFOP is developed based on this method. In this method, the resonance energy range is divided into hyperfine energy intervals (tens of thousands) and the collision probabilities are calculated. Then the slowing-down equation is directly solved based on CPM (collision probability method). Some techniques are applied in solving the slowing-down equation for improving computational efficiency and reducing calculation error. A resonance benchmark problem with homogeneous and infinite material is calculated to validate the accuracy of the computation code and the hyper-fine group cross-section library utilized in the code. A PWR fuel cell is also calculated and the results are compared with MCNP. The results show good accuracy of this method and the validity of UFOP code.
机译:谐振自屏蔽计算在反应堆物理学计算中非常重要。传统的共振计算方法具有一些基本缺陷,其在一些问题中阻碍了其应用。本文研究了高血清能组谐振计算方法,并根据该方法开发了名为UFOP的代码。在该方法中,谐振能量范围被分为高血清能量间隔(数万),并计算碰撞概率。然后基于CPM(碰撞概率方法)直接解决速度下行程。应用一些技术求解改善计算效率和降低计算误差的减速方程。计算具有均匀和无限材料的共振基准问题,以验证计算码的准确性和代码中使用的超细群横截面库。还计算PWR燃料电池,并将结果与​​MCNP进行比较。结果显示了这种方法的良好准确性和UFOP代码的有效性。

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