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A New Direction in the Atmospheric Pollutant Dispersion inside the Planetary Boundary Layer

机译:行星边界层内部大气污染物分散中的新方向

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摘要

In this study, an analytical solution for the steady-state fractional advection-diffusion equation was obtained to simulate the atmospheric dispersion of pollutants in a vertically inhomogeneous planetary boundary layer. The authors propose a method that uses the modified generalized integral Laplace transform technique to solve the transformed problem with a fractional derivative, resulting in a more general solution. The model results were compared with the fractional Gaussian model and demonstrate that, when considering an experimental dataset under moderately unstable conditions, fractional-derivative models perform better than traditional integer-order models.
机译:在该研究中,获得了用于稳态分数平坦扩散方程的分析解决方案以模拟污染物在垂直不均匀行星边界层中的大气分散体。 作者提出了一种方法,该方法使用修改的广义整体拉普拉斯变换技术来解决分数衍生物的转化问题,导致更通用的解决方案。 将模型结果与分数高斯模型进行比较,并表明,当在中等不稳定条件下考虑实验数据集时,分数衍生物模型比传统的整数模型更好。

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