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Higher harmonic analyses of the 252Cf source driven noise analysis method

机译:252 Cf源驱动噪声分析方法的高次谐波分析

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摘要

A theoretical formula has been derived to reconstruct the ratio of spectral densities in the [252]Cf source driven noise analysis (CSDNA) method from the higher harmonic eigenvalues and eigenfunctions of the α-mode neutron transport equations. The formula closely reproduces each power spectral density and the ratio of spectral densities calculated by Monte Carlo simulations, thereby verifying the theoretical formula. The reactivity or k{eff} of a subcritical system is related to the ratio of spectral densities by the fundamental mode approximation in which the higher harmonic modes are neglected. However, the ratio of spectral densities measured in the CSDNA method yields an ambiguous reactivity or k{eff} that depends on the locations of detectors due to the effect of the higher harmonics. A more elaborate method developed by Mihalczo and Valentine et al. infers an “experimental” k{eff} using a measurement and accurate Monte Carlo simulation of CSDNA. This paper discusses the uniqueness of the inferred "experimental" k{eff}.
机译:从α模中子输运方程的高次谐波特征值和特征函数,推导了一个理论公式来重建[252] Cf源驱动噪声分析(CSDNA)方法中的光谱密度比。该公式紧密地再现了每个功率谱密度和通过蒙特卡洛模拟计算的谱密度之比,从而验证了理论公式。亚临界系统的反应性或k {eff}通过忽略高次谐波模的基本模近似与光谱密度之比有关。但是,由于高次谐波的影响,在CSDNA方法中测得的光谱密度之比会产生不确定的反应性或k {eff},其取决于检测器的位置。 Mihalczo和Valentine等人开发了一种更复杂的方法。通过对CSDNA的测量和精确的蒙特卡洛模拟来推断“实验” k {eff}。本文讨论了推断的“实验” k {eff}的唯一性。

著录项

  • 作者

    Yamamoto Toshihiro;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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