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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >In situ gamma spectrometry measurements and Monte Carlo computations for the detection of radioactive sources in scrap metal.
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In situ gamma spectrometry measurements and Monte Carlo computations for the detection of radioactive sources in scrap metal.

机译:原位伽马能谱测量和蒙特卡洛计算的检测放射性废金属的来源。

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摘要

A very limited number of field experiments have been performed to assess the relative radiation detection sensitivities of commercially available equipment used to detect radioactive sources in recycled metal scrap. Such experiments require the cooperation and commitment of considerable resources on the part of vendors of the radiation detection systems and the cooperation of a steel mill or scrap processing facility. The results will unavoidably be specific to the equipment tested at the time, the characteristics of the scrap metal involved in the tests, and to the specific configurations of the scrap containers. Given these limitations, the use of computer simulation for this purpose would be a desirable alternative. With this in mind, this study sought to determine whether Monte Carlo simulation of photon flux energy distributions resulting from a radiation source in metal scrap would be realistic. In the present work, experimental and simulated photon flux energy distributions in the outer part of a truck due to the presence of embedded radioactive sources in the scrap metal load are compared. The experimental photon fluxes are deduced by in situ gamma spectrometry measurements with portable Ge detector and the calculated ones by Monte Carlo simulations with the MCNP code. The good agreement between simulated and measured photon flux energy distributions indicate that the results obtained by the Monte Carlo simulations are realistic.
机译:一个非常有限的实地实验执行评估的相对辐射检测可用的商业敏感性设备用于检测放射性源回收废金属。相当大的合作和承诺的资源供应商的辐射检测系统和钢的合作机或废弃处理设施。不可避免地会特定于设备的吗测试时,的特点废金属参与测试,和废容器的特定配置。考虑到这些限制,计算机的使用模拟为此将是可取的的选择。确定的蒙特卡罗模拟光子通量能量分布造成的辐射源在废金属现实的。模拟光子通量的能量分布外一辆卡车由于存在的一部分嵌入式放射性废金属的来源负载进行了比较。推导出了原位伽马谱测量与便携式通用检测器计算的蒙特卡罗模拟MCNP代码。模拟和测量光子通量能量分布表明,获得的结果通过蒙特卡洛模拟是现实的。

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