成人和儿童参考计算幻影的阴影屏蔽全身计数器的计数效率。

IF 1.6 3区 工程技术 Q3 CHEMISTRY, INORGANIC & NUCLEAR Applied Radiation and Isotopes Pub Date : 2025-01-07 DOI:10.1016/j.apradiso.2025.111667
Rahul Roy, Hemant K. Patni, Pradeep K. Singh, Pramilla D. Sawant
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引用次数: 0

摘要

Shadow Shield全身计数器(SSWBC)用于估算辐射工作人员因摄入裂变和活化产物而产生的体内剂量。在FLUKA代码中对ssbc的几何形状进行了数值模拟。利用Bhabha原子研究中心(BARC)参考瓶人体模型吸收(BOMAB)模型,通过比较实验和模拟计数效率(CEs)(也称为响应)来验证计算模型。利用国际辐射防护委员会提供的成人和儿童(新生儿、1岁、5年、10年和15岁)参考计算模型,在FLUKA中进行蒙特卡罗模拟,以估计对高能光子发射器(HEPs、γ > 200 keV)的响应。模拟了该系统的扫描几何形状,记录了沿床长15个静态位置的NaI(Tl)检测器中的能量沉积。最后的响应是通过平均从模拟得到的15个静态位置的探测器响应来计算的。结果表明,5岁儿童在300 keV时的性别平均反应比成人高20%。在15岁和成年人中,女性幻影在300 keV时的反应比男性高2.4%和3.8%,在1400 keV时的反应比男性高3.2%和1.1%。从新生儿到10岁,男女的反应相似。结果还强调,对于任何年龄组,反应增加到少数探测器位置,然后急剧下降。在任何能量下,探测器的峰值响应位置对不同年龄组是不同的。这些结果将有助于在任何核或辐射紧急情况下对公众的HEPs进行现实评估。
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Counting efficiencies of shadow shield whole body counter for adult and paediatric reference computational phantoms
Shadow Shield Whole Body Counter (SSWBC) is used to estimate internal dose of radiation workers due to the intake of fission and activation products. The SSWBC geometry was numerically modelled in FLUKA code. The computational model was validated by comparing the experimental and simulated counting efficiencies (CEs), also known as response, using Bhabha Atomic Research Centre (BARC) reference BOttle Mannequin Absorption (BOMAB) phantom. Monte Carlo simulations were carried out in FLUKA to estimate the response for High Energy Photon emitters (HEPs, Eγ > 200 keV) using adult and paediatric (new-born, 1-year, 5-year, 10-year and 15-year) reference computational phantoms for male and female provided by International Commission on Radiation Protection. The scanning geometry of the system was simulated, scoring energy deposition in a NaI(Tl) detector at 15 static locations along the bed's length. The final response was calculated by averaging the detector responses at 15 static locations obtained from the simulations. The results highlight that the gender-averaged response at 300 keV for 5-year-olds is ∼20% higher than that for adults. For 15-year-olds and adults, female phantoms have 2.4% and 3.8% higher responses than males at 300 keV and, 3.2% and 1.1% higher responses at 1400 keV. From new-born to 10-year response is similar for both genders. The results also highlight that for any age group, response increases up to few detector locations and then it falls sharply. At any energy, the detector location for peak response is different for various age groups. These results will be useful for realistic assessment of HEPs in members of the public during any nuclear or radiological emergency scenarios.
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来源期刊
Applied Radiation and Isotopes
Applied Radiation and Isotopes 工程技术-核科学技术
CiteScore
3.00
自引率
12.50%
发文量
406
审稿时长
13.5 months
期刊介绍: Applied Radiation and Isotopes provides a high quality medium for the publication of substantial, original and scientific and technological papers on the development and peaceful application of nuclear, radiation and radionuclide techniques in chemistry, physics, biochemistry, biology, medicine, security, engineering and in the earth, planetary and environmental sciences, all including dosimetry. Nuclear techniques are defined in the broadest sense and both experimental and theoretical papers are welcome. They include the development and use of α- and β-particles, X-rays and γ-rays, neutrons and other nuclear particles and radiations from all sources, including radionuclides, synchrotron sources, cyclotrons and reactors and from the natural environment. The journal aims to publish papers with significance to an international audience, containing substantial novelty and scientific impact. The Editors reserve the rights to reject, with or without external review, papers that do not meet these criteria. Papers dealing with radiation processing, i.e., where radiation is used to bring about a biological, chemical or physical change in a material, should be directed to our sister journal Radiation Physics and Chemistry.
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