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Modelling the tidal dispersion of ~137Cs and ~239,240Pu in the English Channel

机译:模拟英吉利海峡中〜137Cs和〜239,240Pu的潮汐扩散

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A numerical model to simulate the tidal dispersion of non-conservative radionuclides in the English Channel has been developed. The model solves the shallow water hydrodynamic equations and, simultaneously, the suspended matter equation which includes deposition and resuspension terms. The model considers that radionuclides can be present in three phases: water, suspended matter and bottom sediments. Thus the equations whose solutions give the temporal evolution of activities in the three phases must be solved too. The transfer of radionuclides between the liquid and solid phases has been described in terms of kinetic transfer coefficients. The model has been applied to simulate the dispersion of ~137Cs and ~239,240Pu released from a nuclear fuel reprocessing plant at La Hague (France). The model gives a realistic estimation of the activity levels detected in the Channel. The transit time of radionuclides from La Hague to the Dover Strait has also been calculated, using the cross-correlation function method, under different weather conditions.
机译:已经开发了一个数值模型来模拟英吉利海峡中非保守放射性核素的潮汐扩散。该模型求解浅水流体动力学方程,同时求解包含沉积和重悬项的悬浮物方程。该模型认为放射性核素可以存在于三个阶段:水,悬浮物和底部沉积物。因此,必须解其解给出了三个阶段活动的时间演化的方程。已经根据动力学转移系数描述了液相和固相之间放射性核素的转移。该模型已用于模拟从法国海牙的核燃料后处理厂释放的〜137Cs和〜239,240Pu的弥散。该模型对在渠道中检测到的活动水平进行了实际估算。还使用互相关函数方法,计算了在不同天气条件下从拉海牙到多佛海峡的放射性核素的传播时间。

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