首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Investigations of effective attenuation coefficients (EACs) of multi-layered polymers using Monte Carlo method
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Investigations of effective attenuation coefficients (EACs) of multi-layered polymers using Monte Carlo method

机译:蒙特卡罗法研究多层聚合物的有效衰减系数(EACS)的研究

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摘要

In the present study, a Monte Carlo model has been developed to compute the EACs of some multi-layered materials, especially polymers for the first time. Different mono-energetic gamma rays with energy range between 59.5 and 1332.5 keV were considered to accomplish this goal. A comparison was made between the simulation results and those derived from a theoretical formula based on available measured attenuation coefficients and data taken from the XCOM program. A highly agreement was achieved. This study shows an improvement over Al-Arif an Kakil's work, in the sense that the modified model is appropriate enough to estimate the EACs within +/- 1.5%. It was indicated that changing the order of the materials did not vary the results significantly. The results showed that the proposed model can be used to determine radiation properties of multi-layer polymers in cases where no analogous experimental data exist or it is expensive to test.
机译:在本研究中,已经开发了一个蒙特卡罗模型,首次开发了一些多层材料的EAC,特别是聚合物。 具有59.5和1332.5 kev之间的能量范围的不同单能级伽马光线被认为是实现这一目标。 在模拟结果和源自理论公式的基于可用测量的衰减系数和从XCOM程序中获取的数据之间进行了比较。 实现了高度协议。 本研究表明,在修改模型足以估计在+/- 1.5%内的EAC时,对Kakil的工作有所改善。 结果表明,改变材料的顺序没有显着改变结果。 结果表明,该模型可用于确定多层聚合物的辐射特性,因为在不存在类似的实验数据或测试昂贵的情况下。

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