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Review of dynamical models for external dose calculations based on Monte Carlo simulations in urbanised areas

机译:审查基于蒙特卡洛模拟的城市化地区外部剂量计算的动力学模型

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After an accidental release of radionuclides to the inhabited environment the external gamma irradiation from deposited radioactivity contributes significantly to the radiation exposure of the population for extended periods. For evaluating this exposure pathway, three main model requirements are needed: (ⅰ) to calculate the air kerma value per photon emitted per unit source area, based on Monte Carlo (MC) simulations; (ⅱ) to describe the distribution and dynamics of radionuclides on the diverse urban surfaces; and (ⅲ) to combine all these elements in a relevant urban model to calculate the resulting doses according to the actual scenario. This paper provides an overview about the different approaches to calculate photon transport in urban areas and about several dose calculation codes published. Two types of Monte Carlo simulations are presented using the global and the local approaches of photon transport. Moreover, two different philosophies of the dose calculation, the "location factor method" and a combination of relative contamination of surfaces with air kerma values are described. The main features of six codes (ECOSYS, EDEM2M, EXPURT, PARATI, TEMAS, URGENT) are highlighted together with a short model—model features in-tercomparison.
机译:在放射性核素意外释放到居住环境后,来自放射性沉积的外部γ辐射会在很长一段时间内显着影响人群的辐射暴露。为了评估该暴露途径,需要满足三个主要模型要求:(ⅰ)基于蒙特卡洛(MC)模拟计算每单位源区域发射的每个光子的空气比释动能值; (ⅱ)描述各种城市表面上放射性核素的分布和动态; (ⅲ)将所有这些要素结合到相关的城市模型中,以根据实际情况计算得出的剂量。本文概述了计算城市地区光子传输的不同方法,并发布了几种剂量计算代码。使用光子传输的整体和局部方法介绍了两种类型的蒙特卡洛模拟。此外,还描述了两种不同的剂量计算原理,“定位因子方法”和表面相对污染与空气比释动能值的组合。六个代码(ECOSYS,EDEM2M,EXPURT,PARATI,TEMAS,URGENT)的主要特征以及一个简短的模型(模型间可比性)被突出显示。

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