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TEMPERATURE EFFECTS OF RESONANCE SCATTERING FOR EPITHERMAL NEUTRONS IN MCNP

机译:MCNP中膜状中子曲线中子的共振散射的温度效应

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Epithermal neutron elastic scattering can be significantly affected by the thermal motion of target nuclides. Since the 1950s continuous-energy Monte Carlo codes have generally accounted for the target motion using a free gas scattering model, with the assumption that the scattering cross-section is constant in energy. Recent work has shown the importance of resonance scattering, and several methods for an improved free-gas treatment have been developed. We have implemented a rejection-based sampling scheme in the MCNP free-gas treatment to account for cross-section variation. The modified MCNP code was used to investigate a number of practical concerns: results for an LWR Doppler defect benchmark; computational costs; and energy limits for the free-gas treatment. Additionally, the impact on a suite of ICSBEP criticality benchmark problems (at room temperature) was determined to be negligible, an important result since such problems are used extensively in testing and evaluating revisions to ENDF/B-VII nuclear data.
机译:曲线形中子弹性散射可显着受到靶核素的热运动的显着影响。由于20世纪50年代的连续能量蒙特卡罗代码通常使用自由气体散射模型来占目标运动,假设散射横截面在能量中是恒定的。最近的作品表明共振散射的重要性,已经开发了几种改进的自由气体处理方法。我们已经在MCNP自由气体处理中实施了基于抑制的抽样方案,以解释横截面变化。修改后的MCNP代码用于调查许多实际问题:LWR多普勒缺陷基准的结果;计算成本;和自由气体处理的能量限制。此外,确定对ICSBEP临界基准问题(在室温下)的影响是可以忽略不计的,因为这些问题在测试和评估了对ENDF / B-VII核数据的修订时使用的重要结果。

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