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瞬发中子衰减常数α是反应堆的重要动态参数,由次临界和临界状态下的瞬发中子衰减常数可以刻度出反应堆的次临界深度。在瞬发中子衰减常数的测量中,脉冲中子源方法是经常使用的非常成熟的方法。本文叙述另一种方法——核噪声方法测量瞬发中子衰减常数,这种方法使用中子探测器,探测堆内中子水平的涨落,通过对中子涨落信号的分析处理,导出瞬发中子衰减常数α。与脉冲中子源方法相比,核噪声方法的优点是测量方法简单,只需在反射层内放置中 相似文献
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基于LabVIEW平台开发了反应堆准宏观中子噪声测量分析系统.布置在次临界反应堆附近的3 He计数管输出的中子脉冲信号,经过若干仪器模块和PCI - 6602数据采集卡,送入计算机,通过频谱分析可以得出次临界反应堆的瞬发中子衰减常数.该系统已经过实验的验证. 相似文献
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介绍了用于测量反应堆瞬发中子衰减常数的Rossi-α测量方法.我们引人计算机和编程技术设计了数字式Rossi-α测量系统,并对其组成结构、数据采集以及处理方法作了详细说明. 相似文献
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采用基于广义半马尔科夫过程(GSMP)建模的仿真方法模拟随机中子场的瞬态演化,利用相应程序MES模拟了252Cf源驱动噪声测量,通过对泄露中子时间谱的频谱分析给出了系统的瞬发中子衰减常数。模拟结果与实测结果比较表明:次缓发10分时,其误差为7%;次缓发100分时,其误差为3%;可为理论分析核装置安全性提供一种新的技术手段。 相似文献
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Experiments were performed on a high-speed online random neutron analyzing system(HORNA system)with a 252Cf neutron source(up to 1 GHz sampling rate and 3 input data channel),to obtain time-and frequencydependent signatures which are sensitive to changes in the composition,fissile mass and configuration of the fissile assembly.The data were acquired by three high-speed synchronized acquisition cards at different detector angles,source-detector distances and block sizes.According to the relationship between 252Cf source and the ratio of power spectral density,Rpsd,all the signatures were calculated and analyzed using correlation and periodogram methods.Based on the results,the simulated autocorrelation functions were utilized for identifying different fissile mass with Elman neural network.The experimental results show that the Rpsd almost remains at constant amplitude in frequency range of 0-100 MHz,and is only related to the angle and source-detector distance.The trained Elman neural network is able to distinguish the characteristics of autocorrelation function and identify different fissile mass.The average identification rate reached 90% with high robustness. 相似文献