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Potential for the use of a liquid activation circulation material to measure the neutron flux in a high gamma-ray background

机译:使用液体活化循环材料在高伽玛射线背景下测量中子通量的潜力

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摘要

The measurement of radiation fields in or near nuclear reactors is important for estimating radiation dose rates and damage, and for developing solutions for shielding problems. Such measurement mush be made in a difficult environment. Many types of detectors have been widely used in reactors to monitor the neutron flux. The activation detector is the most convenient, especially against a high gamma-ray background. In this study, liquid activation material is introduced to obtain a continuous measurement, and a rhodium solution is used to measure the reaction rate. There are three regions in this concept: the activation region, transfer or circulation region, and measurement or detection region. In this study, Rh2(SO4)3with the concentration of 100 g/l is used as the solution. To obtain the maximum reaction rate, an optimum flow rate of 80 cm3/s was applied. Results showed a maximum counting rate in the equilibrium condition of about 18.6 cps. We conclude that it is possible to use a liquid activation method to measure the neutron flux in a highγ-ray background.
机译:核反应堆内或附近的辐射场的测量对于估计辐射剂量率和损害,以及为屏蔽问题开发解决方案非常重要。这种测量必须在困难的环境中进行。许多类型的探测器已广泛用于反应堆中以监测中子通量。激活检测器最方便,尤其是在高伽玛射线背景下。在这项研究中,引入液体活化材料以获得连续的测量值,并使用铑溶液测量反应速率。在此概念中,存在三个区域:激活区域,转移或循环区域以及测量或检测区域。在本研究中,使用浓度为100 g / l的Rh2(SO4)3作为溶液。为了获得最大反应速率,应用了80 cm3 / s的最佳流速。结果表明,在平衡条件下的最大计数率约为18.6 cps。我们得出结论,可以使用液体活化方法来测量高γ射线背景下的中子通量。

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