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A novel analytical approach for advection diffusion equation for radionuclide release from an area source

机译:一种新的辐射核素释放从区域源的扩散方程的新分析方法

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The method of the Laplace transform has been used to obtain an analytical solution of the three-dimensional steady state advection diffusion equation for the airborne radionuclide release from any nuclear installation such as the power reactor in an area source. The present treatment takes into account the removal of the pollutants through the nuclear reaction. We assume that the pollutants are emitted as a constant rate from the area source. This physical consideration is achieved by assuming that the vertical eddy diffusivity coefficient should be a constant. The prevailing wind speed is a constant inx?direction and a linear function of the vertical heightz. The present model calculations are compared with the other models and the available data of the atmospheric dispersion experiments that were carried out in the nuclear power plant of Angra dos Reis (Brazil). The results show that the present treatment performs well as the analytical dispersion model and there is a good agreement between the values computed by our model and the observed data.
机译:Laplace变换的方法已经用于获得从任何核装置释放的空中放射核素释放的三维稳态平行扩散方程的分析解,例如在区域源中的电力反应器中的任何核装置。本治疗考虑了通过核反应去除污染物。我们假设污染物作为来自地区来源的恒定率发出。通过假设垂直涡流扩散系数应该是恒定的,可以实现这种物理考虑。普遍的风速是恒定的inxλ方向和垂直高度的线性函数。将本模型计算与其他模型进行比较,以及在Angra DoS Reis(巴西)的核电站中进行的大气分散实验的可用数据。结果表明,目前的处理表现良好,作为分析分散模型,在我们的模型和观察数据计算的值之间存在良好的一致性。

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