首页> 外文期刊>Journal of nuclear science and technology >Development of Regionally Extended/ Worldwide Version of System for Prediction of Environmental Emergency Dose Information : WSPEEDI, (II)Long-Range Transport Model and Its Application to Dispersion of Cesium-137 from Chernobyl
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Development of Regionally Extended/ Worldwide Version of System for Prediction of Environmental Emergency Dose Information : WSPEEDI, (II)Long-Range Transport Model and Its Application to Dispersion of Cesium-137 from Chernobyl

机译:区域扩展/全球版本的环境紧急剂量信息预测系统的开发:WSPEEDI,(II)长距离运输模型及其在切尔诺贝利中铯137的扩散中的应用

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As a part of a study to expand the computational region of SPEEDI (System for Prediction of Environmental Emergency Dose Information), a long-range atmospheric transport model of radioactivity was developed. This model computes air concentration, deposition, external γ-dose and internal dose due to inhalation. The model is applied to the simulation of dispersion of 137Cs from Chernobyl over Europe and the calculated values of surface air concentrations and deposition were compared with those of measurements. In the comparison of surface air concentration, about half of the calculated value agreed with measured ones within an order. The degree of quantitative agreement was comparable to that of the model application for the dispersion in local complex terrain. This suggests that the proposed model has capability to assess the long-range transport and the consequence of radioactivity released into the atmosphere.
机译:作为扩大SPEEDI(环境紧急剂量信息预测系统)的计算范围的研究的一部分,开发了一种放射性的远程大气传输模型。该模型计算吸入引起的空气浓度,沉积,外部γ剂量和内部剂量。该模型被用于模拟切尔诺贝利137 Cs在欧洲的扩散,并将表面空气浓度和沉积的计算值与测量值进行了比较。在比较地表空气浓度时,计算值的一半与一个订单内的测量值相符。定量一致性程度可与模型应用在局部复杂地形中的分散度相媲美。这表明所提出的模型具有评估远距离迁移和释放到大气中的放射性后果的能力。

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