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~3He proportional counter development for thermal neutron detection

机译:〜3热中子检测比例计数器开发

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Neutron detection is used in a wide range of applications in nuclear physics, radiation protection, nuclear fuel cycle, reactor instrumentation, security and industrial measurement. Among the detectors used in this field, we notice the gas-filled He-3 proportional counters which have been one of the main detecting tools for thermal and cold neutron detection for many years. This last characteristic has ensured that this detector is one of the best tools for thermal neutron flux measurements in a nuclear reactor control. In the instrumentation and detection laboratory of the Nuclear Research Center, of Birine, we are working toward the design and the development of this type of detectors, indeed, several prototypes of neutron detectors have been realized including the He-3 proportional counters. Through this paper, we will present the experimental steps and the obtained results to carry out a He-3 proportional counter prototype that was fully developed and tested in our laboratory. A comparison study was made between our detector and a commercial cylindrical He-3 neutron detector which was considered in this work as a reference detector: LND252 (He-3)-PC. The results showed that the characteristics of the gas amplification and the counting plateau for the two counters reference LND 252 (He-3)-PC and our prototype was of the same order of scale. The experimental tests show that our developed prototype perfect fit with the standard International Electrotechnical Commission (IEC, ) in the operating principle, the technology adopted and obtained technical specifications.
机译:中子检测用于核物理学,辐射防护,核燃料循环,反应堆仪表,安全性和工业测量的各种应用中。在该领域使用的探测器中,我们注意到气体填充的HE-3比例计数器,这是多年来是热和冷中子检测的主要检测工具之一。最后一个特征确保了该探测器是核反应堆控制中的热中子通量测量的最佳工具之一。在Birine核研究中心的仪器检测和检测实验室,我们正致力于设计和这种探测器的开发,实际上,已经实现了几种中子探测器的原型包括HE-3比例计数器。通过本文,我们将介绍实验步骤和获得的结果,在我们的实验室中开发和测试的HE-3比例计数器原型。在我们的探测器和商业圆柱HE-3中子探测器之间进行了比较研究,该研究作为参考探测器考虑在这项工作中:LND252(HE-3)-PC。结果表明,气体放大的特点和两个计数器参考LND 252(HE-3)-PC和我们的原型的计数高原具有相同的规模顺序。实验测试表明,我们开发的原型与标准国际电工委员会(IEC)完美地适合运行原则,该技术采用和获得技术规格。

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