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Self-monitoring fission chamber: theoretical groundwork

机译:自我监测裂变室:理论基础

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The most common application of fission chambers in a core monitoring system is to measure the neutron flux. As is well known, in such a case, it is advantageous to use the so-called Campbell relationships. However, the application of of the Campbell methods requires some calibration of the chamber. Due to certain events, such as crack of the chamber wall, the calibration might become obsolete, and the system would underestimate the count rate and therefore the flux. This paper investigates the possible application of a simple method to identify whether the measured count rate change is due to the malfunction of the detector or due to the change of neutron flux. The method is based on the change of the frequency dependence of the power spectral density of the fission chamber signal, due to the malfunction. For the current work the filling gas pressure drop due to cracking was considered as the malfunction. In theory the method enables an early failure detection. The experimental verification is under progress.
机译:核心监测系统中的裂变室最常见的应用是测量中子通量。众所周知,在这种情况下,使用所谓的坎贝尔关系是有利的。然而,坎贝尔方法的应用需要腔室的一些校准。由于某些事件,例如腔室墙的裂缝,校准可能会过时,系统将低估计数率并因此低估。本文调查了一种简单的方法来识别测量的计数率变化是否是由于探测器的故障或由于中子通量的变化而导致的。该方法基于裂变室信号的功率谱密度的频率依赖性的变化,由于故障。对于目前的工作,将裂解引起的填充气体压降被认为是故障。理论上,该方法能够进行早期故障检测。实验验证正在进行中。

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