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Determination of the optimal positions for installing gamma ray detection systems at Tehran Research Reactor

机译:确定在德黑兰研究堆安装伽马射线探测系统的最佳位置

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Dosimetric instruments must constantly monitor radiation dose levels in different areas of nuclear reactor. Tehran Research Reactor (TRR) has seven beam tubes for different research purposes. All the beam tubes extend from the reactor core to Beam Port Floor (BPF) of the reactor facility. During the reactor operation, the gamma rays exiting from each beam tube outlet produce a specific gamma dose rate field in the space of the BPF. To effectively monitor the gamma dose rates on the BPF, gamma ray detection systems must be installed in optimal positions. The selection of optimal positions is a compromise between two requirements. First, the installation positions must possess largest gamma dose rates and second, gamma ray detectors must not be saturated in these positions. In this study, calculations and experimental measurements have been carried out to identify the optimal positions of the gamma ray detection systems. Eight three dimensional models of the reactor core and related facilities corresponding to eight scenarios have been simulated using MCNPX Monte Carlo code to calculate the gamma dose equivalent rate field in the space of the BPF. These facilities are beam tubes, thermal column, pool, BPF space filled with air, facilities such as neutron radiography facility, neutron powder diffraction facility embedded in the beam tubes as well as biological shields inserted into the unused beam tubes. According to the analysts results of the combined gamma dose rate field, three positions on the north side and two positions on the south side of the BPF have been recognized as optimal positions for installing the gamma ray detection systems. To ensure the consistency of the simulation data, experimental measurements were conducted using TLDs (600 and 700) pairs during the reactor operation at 4.5 MW.
机译:剂量学仪器必须不断监测核反应堆不同区域的辐射剂量水平。德黑兰研究堆(TRR)具有七个用于不同研究目的的束管。所有的束管都从反应堆芯延伸到反应堆设施的束流端口底板(BPF)。在反应堆运行期间,从每个束管出口射出的伽马射线在BPF的空间中产生特定的伽马剂量率场。为了有效监控BPF上的伽马剂量率,必须将伽马射线检测系统安装在最佳位置。最佳位置的选择是两个要求之间的折衷。首先,安装位置必须具有最大的伽马剂量率,其次,伽马射线探测器不得在这些位置饱和。在这项研究中,已经进行了计算和实验测量以识别伽马射线探测系统的最佳位置。已使用MCNPX蒙特卡洛代码模拟了与八个方案相对应的八个堆芯和相关设施的三维模型,以计算BPF空间中的伽马剂量当量率场。这些设施包括束管,热柱,池,充满空气的BPF空间,诸如中子射线照相设施,嵌入束管的中子粉末衍射设施以及插入未使用束管的生物防护罩等设施。根据组合的伽马剂量率场的分析结果,BPF北侧的三个位置和南侧的两个位置被认为是安装伽马射线探测系统的最佳位置。为确保模拟数据的一致性,在反应堆4.5兆瓦运行期间,使用TLD(600和700)对进行了实验测量。

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