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Nuclear tools for characterising radiological dispersion in complex terrain: evaluation of regulatory and emergency response models

机译:表征复杂地形中放射性扩散特征的核工具:评估监管和应急模型

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摘要

Routine operations of a nuclear research reactor and its facilities offer opportunities for collection of rare environmental tracer datasets which can be used for atmospheric dispersion model evaluation studies. The HIFAR reactor near Sydney, Australia, routinely emits the radioactive noble gas ~41Ar, and other radionuclides such as ~133Xe and ~135Xe are also emitted from nearby radiopharmaceutical production facilities. Despite extremely low emission levels of these gases, they are nevertheless detectable using state-of-the-art technology, and sensitive detectors have been placed at four locations in the surrounding region which features complex terrain. The high research potential of this unique dataset is illustrated in the current study, in which predictions from two atmospheric dispersion models used for emergency response are compared with ~41Ar peak observations from the detector network under a range of stability conditions, and long-term integrated data is also compared with a routine impact assessment model.
机译:核研究反应堆及其设施的常规运行为收集稀有的环境示踪剂数据集提供了机会,这些数据可用于大气弥散模型评估研究。澳大利亚悉尼附近的HIFAR反应堆通常会排放放射性稀有气体〜41Ar,附近的放射性药物生产设施也会排放其他放射性核素,例如〜133Xe和〜135Xe。尽管这些气体的排放水平极低,但是仍可以使用最新技术将其检测出来,并且敏感检测器已放置在周围地区地形复杂的四个位置。当前研究表明了这一独特数据集的高研究潜力,其中将用于应急响应的两个大气扩散模型的预测与在一定范围的稳定条件下从探测器网络获得的〜41Ar峰值观测值进行了比较,并进行了长期综合还将数据与常规影响评估模型进行比较。

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