首页> 外文期刊>Journal of nuclear science and technology >Improvement of Worldwide Version of System for Prediction of Environmental Emergency Dose Information (WSPEEDI), (I) New Combination of Models, Atmospheric Dynamic Model MM5 and Particle Random Walk Model GEARN-new
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Improvement of Worldwide Version of System for Prediction of Environmental Emergency Dose Information (WSPEEDI), (I) New Combination of Models, Atmospheric Dynamic Model MM5 and Particle Random Walk Model GEARN-new

机译:改进世界范围内的环境应急剂量信息预测系统(WSPEEDI),(I)新的模型组合,大气动力学模型MM5和粒子随机游走模型GEARN-new

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摘要

The new version of WSPEEDI (Worldwide version of System for Prediction of Environmental Emergency Dose Information) is developed by introducing the combination of models, the atmospheric dynamic model MM5 and the Lagrangian particle dispersion model GEARN-new to improve the prediction capability of atmospheric dispersion of radionuclides discharged during nuclear emergency. The major improvements are (1) the forecasts of meteorological conditions with high resolution in time and space, (2) the simultaneous calculations for local and regional areas and (3) the consideration of detailed physical processes (e.g. wet deposition, vertical diffusion in atmospheric boundary layer). The performance of new models is evaluated by air sampling data on 137{sup left}Cs over Europe during the Chernobyl accident. The calculated surface air concentrations showed good agreement with measurements.
机译:通过引入模型,大气动力学模型MM5和拉格朗日粒子弥散模型GEARN-new的组合,开发了新版本的WSPEEDI(全球环境应急剂量信息预测系统),从而提高了大气弥散的预测能力。核应急期间释放的放射性核素。主要的改进是(1)时空高分辨率的气象条件预报;(2)局部和区域面积的同步计算;(3)考虑详细的物理过程(例如湿沉降,大气垂直扩散)边界层)。切尔诺贝利事故期间,通过欧洲137个Cs的空气采样数据评估了新模型的性能。计算得出的地面空气浓度与测量结果吻合良好。

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