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Calculation of Lead-Iron Double-Layer Thickness for Gamma-Ray Shielding by MATLAB Program

机译:MATLAB屏蔽伽马射线屏蔽铅双层厚度的计算

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摘要

This contribution is aimed at designing the optimal thickness of lead-iron double-layer container to store a radioactive waste releasing the photon energy at 1.3325 MeV and initial radiation intensity at 100 mSv/hr using the optimization design by MATLAB software. This design consisted of three parts of calculations to achieve 1000 times the radiation attenuation of container. The first was the logarithmic interpolation for the mass attenuation coefficient. The second was the bilogarithmic interpolation for the exposure buildup factor. The third was the contour-plotting analytical technique for the optimal thickness of radiation container. The values of mass attenuation coefficient and exposure buildup factor were exactly validated as compared with the standard reference database. Furthermore, we have found that the optimal thickness was 3.2 cm for lead (1st layer) and 17.0 cm for iron (2nd layer). Container weight was 994.30 kg, whilst container cost was 167.30 USD. The benefit of our design can quickly and precisely apply for the radiation safety assessment of the occupational radiation workers who always work in the nuclear reactor area.
机译:这种贡献旨在设计铅铁双层容器的最佳厚度,以将放射性废物释放在1.3325meV下的光子能量和100msV / HR的初始辐射强度,使用Matlab软件的优化设计。这种设计包括三个部分计算,实现了容器的辐射衰减的1000倍。第一是质量衰减系数的对数插值。第二个是曝光累积因子的双因素插值。第三是用于辐射容器的最佳厚度的轮廓绘图分析技术。与标准参考数据库相比,质量衰减系数和曝光累积因子的值完全验证。此外,我们发现铅(第一层)的最佳厚度为3.2cm,铁(第二层)为17.0cm。集装箱重量为994.30千克,虽然集装箱成本为167.30美元。我们设计的好处可以快速且精确地申请始终在核反应堆地区工作的职业辐射工人的辐射安全评估。

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