用Geant4模拟HTR-10反康普顿HPGE γ射线谱仪

Cui Mao, Yi-Bao Liu, Liguo Zhang, J. Tong, Bingfeng Xia, Z. Yin
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引用次数: 0

摘要

球型燃料元件的高效、准确的燃耗测量是球床高温气冷堆运行的关键环节。由于HTR-10的运行特性,利用Cs-137活性测定燃耗的方法的准确性下降。HTR-10作为一个试验反应堆,在过去几年里一直在断断续续地运行。它一直处于关闭状态,而不是电力运行。为了提高铯-137活度的测量精度,提高检测低活度放射性核素的可能性,以纠正经典的燃耗测定方法,本文讨论了一种抑制康普顿平台的反符合技术的测量系统。本文利用Geant4模拟了以高纯锗γ射线谱仪为主探测器,塑料闪烁体为环形探测器的反符合测量过程。通过分析环形探测器各种形状参数下不同检测场景下的信噪比,优化出抗符合效果最好的环形探测器。上述研究成果为构建基于反康普顿技术的在线燃耗测量系统提供了重要的理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of HTR-10 Anti-Compton HPGE Gamma-Ray Spectrometer With Geant4
The efficient and accurate burn-up measurement of the spherical fuel element is the key component of the operation of the pebble bed high temperature gas-cooled reactor. The accuracy of the method that determine burnup by the activity of Cs-137 degrades due to operation characteristics of HTR-10. HTR-10, as an test reactor, operated on and off during the past years. It stayed shutdown more than power operation. In order to improve the measurement accuracy of Cs-137 activity and enhance the possibility to detect radionuclides with low activity, which can be used to correct the classic burnup assay method, a new measurement system is now discussed using anti-coincidence technology, which suppresses the Compton plateau. In this paper, Geant4 is used to simulate the anticoincidence measurement process taking high purity germanium γ-ray spectrometer as main detector and plastic scintillator as the annular detector. By analyzing the signal to noise ratio in different detection scenarios with all kinds of shape parameters of the annular detector, the annular detector with the best anti-coincidence effect are optimaized. The above research results provide an important theoretical basis for the construction of online burn-up measurement system based on anti-Compton technology.
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