首页> 外文期刊>Geoscientific Model Development Discussions >On the model uncertainties in Bayesian source reconstruction using an ensemble of weather predictions, the emission inverse modelling system FREAR v1.0, and the Lagrangian transport and dispersion model Flexpart v9.0.2
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On the model uncertainties in Bayesian source reconstruction using an ensemble of weather predictions, the emission inverse modelling system FREAR v1.0, and the Lagrangian transport and dispersion model Flexpart v9.0.2

机译:关于贝叶斯源重建的模型不确定性,使用天气预报的集合,排放反转建模系统FREAR v1.0,以及拉格朗日传输与分散模型FLEXPART v9.0.2

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Bayesian source reconstruction is a powerful tool for determining atmospheric releases. It can be used, amongst other applications, to identify a point source releasing radioactive particles into the atmosphere. This is relevant for applications such as emergency response in case of a nuclear accident or Comprehensive Nuclear-Test-Ban treaty verification. The method involves solving an inverse problem using environmental radioactivity observations and atmospheric transport models. The Bayesian approach has the advantage of providing an uncertainty quantification on the inferred source parameters. However, it requires the specification of the inference input errors, such as the observation error and model error. The latter is particularly hard to provide as there is no straightforward way to determine the atmospheric transport and dispersion model error. Here, the importance of model error is illustrated for Bayesian source reconstruction using a recent and unique case where radionuclides were detected on several continents. A numerical weather prediction ensemble is used to create an ensemble of atmospheric transport and dispersion simulations, and a method is proposed to determine the model error.
机译:贝叶斯源重建是一个强大的工具,用于确定大气释放。它可以在其他应用中使用,以识别将放射性粒子释放到大气中的点源。这与核事故或全面的核试验条约核查等应急响应等申请相关。该方法涉及使用环境放射性观测和大气输送模型来解决逆问题。贝叶斯方法具有在推断的源参数上提供不确定性量化的优点。但是,它需要推断输入错误的规范,例如观察误差和模型错误。后者特别难以提供,因为没有直接的方式来确定大气传输和分散模型误差。在这里,使用最近和独特的情况来说明模型误差的重要性,其中近几种大陆检测到放射性核素的唯一情况。使用数值天气预报合奏用于创建大气传输和色散模拟的集合,并提出了一种方法来确定模型误差。

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