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首页> 外文期刊>EPJ Web of Conferences >Study of a collimation method as a nondestructive diagnostic diagnostic technique by PGNAA for salt distribution in concrete structures at RANS
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Study of a collimation method as a nondestructive diagnostic diagnostic technique by PGNAA for salt distribution in concrete structures at RANS

机译:RANS混凝土结构盐分布盐分布盐分分布的盐分分布准直方法

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摘要

To meet strong demand for realizing an effective tool to diagnose salt distribution in concrete infrastructures, we have started a development of a new technique using a prompt gamma neutron activation analysis (PGNAA) at the RIKEN accelerator-driven compact neutron source (RANS). So far, by applying PGNAA we have experimentally confirmed that neutrons from RANS can detect small enough amounts of chlorine within the marginal concentration of around 1.2 kg/m~(3)to involve steel corrosion. In this study, we have proposed two methods to derive the salt depth profile which is critical information of steel corrosion start. The first one utilizes a difference in the intensity ratio of two different γ-ray energies of interest, which is depending on the depth where the neutron capture reaction arises inside the concrete. The second is called the collimator method that measure γ-rays coming through a collimator around detector. Detection of γ-ray associated with~(35)Cl coming from the assembly of concrete has been also simulated with conditions of neutrons from RANS and a collimator. The feasibility of the method was discussed.
机译:为了满足强烈的需求,对实现具体基础设施诊断盐分分配的有效工具,我们已经开始开发了在Riken Accelerator驱动的紧凑型致密中子源(RANS)的提示伽马中子激活分析(PGNAA)的新技术。到目前为止,通过申请PGNAA,我们已经通过实验证实,来自Rans的中子可以在边缘浓度范围内检测足够的氯,约为1.2kg / m〜(3)以涉及钢腐蚀。在这项研究中,我们提出了两种方法来得出盐深度轮廓,这是钢腐蚀的关键信息。第一个利用来自感兴趣的两个不同γ射线能量的强度比的差异,这取决于中子捕获反应在混凝土内产生的深度。第二被称为通过探测器周围的准直器测量γ射线的准直器方法。已经模拟了来自混凝土组件的〜(35)C1相关的γ射线的检测,其中rans和准直器的中子条件模拟。讨论了该方法的可行性。

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