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Simulation code for estimating external gamma-ray doses from a radioactive plume and contaminated ground using a local-scale atmospheric dispersion model

机译:使用局部尺度大气分散模型从放射性羽流和污染的地面估计外部伽马射线剂量的仿真代码

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摘要

In this study, we developed a simulation code powered by lattice dose-response functions (hereinafter SIBYL), which helps in the quick and accurate estimation of external gamma-ray doses emitted from a radioactive plume and contaminated ground. SIBYL couples with atmospheric dispersion models and calculates gamma-ray dose distributions inside a target area based on a map of activity concentrations using pre-evaluated dose-response functions. Moreover, SIBYL considers radiation shielding due to obstructions such as buildings. To examine the reliability of SIBYL, we investigated five typical cases for steady-state and unsteady-state plume dispersions by coupling the Gaussian plume model and the local-scale high-resolution atmospheric dispersion model using large eddy simulation. The results of this coupled model were compared with those of full Monte Carlo simulations using the particle and heavy-ion transport code system (PHITS). The dose-distribution maps calculated using SIBYL differed by up to 10% from those calculated using PHITS in most target locations. The exceptions were locations far from the radioactive contamination and those behind the intricate structures of building arrays. In addition, SIBYL's computation time using 96 parallel processing elements was several tens of minutes even for the most computationally expensive tasks of this study. The computation using SIBYL was approximately 100 times faster than the same calculation using PHITS under the same computation conditions. From the results of the case studies, we concluded that SIBYL can estimate a ground-level dose-distribution map within one hour with accuracy that is comparable to that of the full Monte Carlo simulation.
机译:在这项研究中,我们开发了由晶格剂量 - 响应函数(以下称Sibyl)提供的仿真代码,这有助于从放射性羽流和污染的地面发出的外部伽马射线剂量的快速和准确估计。具有大气分散模型的Sibyl耦合,并根据使用预评估剂量 - 反应函数的活性浓度的图谱计算靶区域内的伽马射线剂量分布。此外,Sibyl由于诸如建筑物的障碍而认为辐射屏蔽。为了检查Sibyl的可靠性,通过使用大涡模拟耦合高斯羽状模型和局部尺度的高分辨率大气分散模型,研究了五个典型的稳态和非定常柱羽状分散体。将该耦合模型的结果与使用粒子和重离子传输代码系统(PHITS)的完整蒙特卡罗模拟的结果进行了比较。使用Sibyl计算的剂量分布图在大多数目标位置中使用诸如使用的PHITS计算的那些差异高达10%。例外是远离放射性污染的位置以及建筑物阵列复杂结构背后的位置。另外,即使对于本研究的最重要昂贵的任务,Sibyl的计算时间也是几十分钟即使对于最昂贵的昂贵任务也是如此。使用Sibyl的计算比使用相同的计算条件下的相同计算比相同的计算速度快大约100倍。从案例研究的结果中,我们得出结论,Sibyl可以在一个小时内估计地面剂量分布图,其精度可与完整的Monte Carlo仿真相当。

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