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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Monte Carlo simulation of some gel dosimeters' behaviour in photonic radiation field: research on attenuation coefficient
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Monte Carlo simulation of some gel dosimeters' behaviour in photonic radiation field: research on attenuation coefficient

机译:光子辐射场中一些凝胶剂量计的蒙特卡罗模拟 - 衰减系数研究

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摘要

In this study, a model of MCNP based on Monte Carlo method was developed to calculate the mass attenuation coefficients of 15 gel dosimeters, namely LMD1, LMD2, PAG, nPAG, nMAG, VIPAR, PABIG,MAGAT,MAGAS, PAGAT, PRESAGE, BANG-1, BANG-2, BANG-3 and MAGIC at 10-1332.5 keV photon energies. In order to validate the model, the obtained results of simulation work were compared with data of XCOM. It was observed that the results were in high accordance with data of XCOM program. Accordingly, the model can be used in dosimetry, medicine and industry for various polymers and materials. Furthermore, on one hand, parameters of radiation transport in developing new gel dosimeters and materials can be calculated and assessed using the proposed model before clinical application and on the other hand, the data obtained by simulation can be used to analyze the behavior of gel dosimeters in photon radiation fields. In this regard, among 15 gel dosimeters studied here, LMD1 and PRESAGE showed the best and worst performance in comparison with other gel dosimeters, respectively. Other gel dosimeters had a poor performance, especially in energy range of 10-50 keV. Their relative mass attenuation coefficient difference with the value of water was less than 1.4%.
机译:在本研究中,开发了一种基于Monte Carlo方法的MCNP模型,以计算15凝胶剂量计的质量衰减系数,即LMD1,LMD2,PAG,NPAG,NMAG,VIPAR,Pabig,Magat,Magas,Pagat,展示,Bang -1,Bang-2,Bang-3和Magic在10-1332.5 Kev Photon Energies。为了验证模型,将获得的模拟结果与XCOM数据进行比较。观察结果,结果与XCOM计划的数据重大。因此,该模型可用于多季度,医药和工业,用于各种聚合物和材料。此外,一方面,在临床应用之前,可以使用所提出的模型来计算和评估开发新的凝胶剂量计和材料的辐射传输参数,另一方面,通过模拟获得的数据可用于分析凝胶剂量计的行为在光子辐射场中。在这方面,在这里研究的15个凝胶剂量计中,与其他凝胶剂量计相比,LMD1和刻度显示出最佳和最差的性能。其他凝胶剂量计具有差的性能差,特别是在10-50 kev的能量范围内。它们与水值的相对质量衰减系数差异小于1.4%。

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