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利用嵌套式中子谱仪在卡米尼反应堆南屏蔽门附近进行中子能谱测量。

Neutron spectrum measurements near KAMINI reactor south beam vault door using nested neutron spectrometer.

机构信息

Reactor Shielding and Data Division, Indira Gandhi Centre for Atomic Research, Kalpakkam 603102, India.

出版信息

Radiat Prot Dosimetry. 2024 Jul 17;200(11-12):1132-1137. doi: 10.1093/rpd/ncae015.

Abstract

KAlpakkam MINI reactor (KAMINI) is a 233U fuelled research reactor has various neutron irradiation locations for experimental purposes. The pit at the south beam end of KAMINI reactor is being extensively utilised for neutron attenuation experiments in prospective shielding materials as well as for neutron radiography. During reactor operation, it will be closed by a movable shield. A vault door is located above the shield and the movable shield is used to attenuate streaming neutrons and gamma-rays during reactor operation. Even with the shield, there exists significant dose because of streaming neutrons and gamma rays. Its variation depends on the power of the reactor. The neutron and gamma dose rates close to the south beam vault door have recently been found to be 275-300 μSv/h and 175-200 μSv/h, respectively, when the reactor is operating at 10 kW. In order to characterise the streaming neutron spectra of vault door place for the first time, measurements are done using the Nested Neutron Spectrometer. Along with the neutron flux, neutron mean energy and ambient dose-equivalent rate are also measured and compared with earlier measurements carried out inside the south beam pit. It is observed that the presence of paraffin shield reduces the neutron average energy from 370 to 178 keV. Apart from energy reduction, 10 kW normalised neutron flux of south beam pit is also attenuated by the shield by 25 000 times and it is found that the neutron spectrum of the measured location is also more thermalized. Neutron reference data of the location are generated.

摘要

卡兰帕克微型反应堆(KAMINI)是一座 233U 燃料的研究反应堆,拥有多个用于实验目的的中子辐照位置。KAMINI 反应堆南端射束孔正在被广泛用于潜在屏蔽材料的中子衰减实验以及中子照相。在反应堆运行期间,它将被一个可移动的屏蔽物关闭。屏蔽物上方有一个穹顶门,可移动的屏蔽物用于在反应堆运行期间衰减射束中的中子和伽马射线。即使有屏蔽物,由于射束中的中子和伽马射线的存在,仍然存在显著的剂量。其变化取决于反应堆的功率。当反应堆以 10kW 的功率运行时,最近发现南射束穹顶门附近的中子和伽马剂量率分别为 275-300μSv/h 和 175-200μSv/h。为了首次对穹顶门位置的射束中子能谱进行特征描述,使用嵌套中子谱仪进行了测量。除了中子通量外,还测量了中子平均能量和环境剂量当量率,并与在南射束坑内进行的早期测量进行了比较。结果表明,石蜡屏蔽的存在将中子平均能量从 370keV 降低到 178keV。除了能量降低之外,屏蔽物还将南射束坑的 10kW 归一化中子通量衰减了 25000 倍,并且发现所测位置的中子谱也更加热化。生成了该位置的中子参考数据。

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