A Monte Carlo Method for Estimating Secondary Photon Yields from Beta-emitting Radionuclides Concentrated in Environmental Soil.

IF 1.4 4区 医学 Q4 ENVIRONMENTAL SCIENCES
E A Asano, S A Dewji
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引用次数: 0

Abstract

Abstract: External exposure due to secondary photons (predominantly bremsstrahlung) generated from electron source emissions in environmental soil are of concern due to their ability to deposit significant amounts of ionizing energy to organs and tissues within the body. The "condensed history method" employed in many modern Monte Carlo (MC) codes may be used to simulate secondary photon yields (given as photons per beta decay) arising from electron source emissions with relatively few assumptions regarding the secondary photon spatial, energy, and angular dependencies. These yields may in turn be used to derive protection quantities such as secondary photon effective dose rate (DR) and risk coefficients for a variety of idealized external exposure scenarios. Use of the condensed history method is, however, computationally burdensome when simulating idealized external exposure scenarios even with available parallel computing resources. Consequently, use of the method was largely prohibitive for prior environmental dosimetry and risk assessment applications that required innumerable MC simulations for deriving secondary photon protection quantities. A MC method has herein been proposed for estimating secondary photon yields from electron source emissions in environmental soil with the condensed history method in a computationally feasible manner using the Monte Carlo N-Particle version 6.2 (MCNP6.2) radiation transport code. The proposed method was demonstrated with radiation transport models of idealized external exposure scenarios patterned after Federal Guidance Report (FGR) 15, and secondary photon yields determined using the proposed method and a previously adopted analytical method were compared.

一种估算环境土壤中放射性核素二次光子产率的蒙特卡罗方法。
摘要:环境土壤中电子源辐射产生的二次光子(主要是轫致辐射)由于能够向体内器官和组织沉积大量的电离能量而引起外界暴露。在许多现代蒙特卡罗(MC)代码中使用的“浓缩历史方法”可用于模拟由电子源发射产生的二次光子产率(以每β衰变的光子数给出),而对二次光子的空间、能量和角度依赖性的假设相对较少。这些产率可反过来用于推导保护量,如二次光子有效剂量率(DR)和各种理想外部暴露情景的风险系数。然而,在模拟理想化的外部暴露场景时,即使有可用的并行计算资源,使用浓缩历史方法的计算负担也很大。因此,该方法在很大程度上禁止用于先前的环境剂量学和风险评估应用,这些应用需要无数MC模拟来获得二次光子保护量。本文利用蒙特卡罗n粒子6.2版(MCNP6.2)辐射输运代码,提出了一种计算可行的MC方法,用浓缩历史法估计环境土壤中电子源发射的二次光子产率。采用基于联邦指导报告(FGR) 15的理想外照射情景的辐射输运模型验证了该方法,并比较了采用该方法和先前采用的分析方法确定的二次光子产率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Health physics
Health physics 医学-公共卫生、环境卫生与职业卫生
CiteScore
4.20
自引率
0.00%
发文量
324
审稿时长
3-8 weeks
期刊介绍: Health Physics, first published in 1958, provides the latest research to a wide variety of radiation safety professionals including health physicists, nuclear chemists, medical physicists, and radiation safety officers with interests in nuclear and radiation science. The Journal allows professionals in these and other disciplines in science and engineering to stay on the cutting edge of scientific and technological advances in the field of radiation safety. The Journal publishes original papers, technical notes, articles on advances in practical applications, editorials, and correspondence. Journal articles report on the latest findings in theoretical, practical, and applied disciplines of epidemiology and radiation effects, radiation biology and radiation science, radiation ecology, and related fields.
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