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On the source inversion of fugitive surface layer releases. Part I. Model formulation and application to simple sources

机译:在源头上,逃逸性表面层释放。第一部分:模型制定和简单来源的应用

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Source inversion by dispersion modelling of fugitive particulate matter (PM) emissions entails considerable difficulty. Fugitive PM sources are rarely steady or point sources. They occur near the ground, where there are high vertical gradients of wind velocity and potential temperature. To resolve the source from the background concentrations, measurements need to be conducted very close to the source. In this study, a dispersion model was developed that consists of numerically solving the pollutant transport equation, while incorporating the Monin-Obukhov similarity theory. By using this numerical approach, in contrast to Gaussian dispersion models, wind shear effects and plume meandering were accounted for directly. A series of controlled experiments were conducted, in which the fugitive PM sources were parameterized as much as possible. The developed model was used to obtain operation-specific PM10 emission factors (EFs). This is the first of two articles describing the model and the field campaigns in which it was applied to determine the EFs. Part I describes the mathematical model and its application to two relatively simple sources. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过对散逸性颗粒物(PM)排放物进行扩散建模进行源反演会带来相当大的困难。逃逸的PM源很少是稳定源或点源。它们发生在地面附近,那里风速和潜在温度的垂直梯度很高。为了从背景浓度中分辨出源,需要在离源非常近的地方进行测量。在这项研究中,建立了一个弥散模型,该模型包含数值求解污染物的迁移方程,同时结合了莫宁-奥布霍夫相似性理论。通过使用这种数值方法,与高斯色散模型相反,直接考虑了风切变效应和羽状弯曲。进行了一系列受控实验,其中尽可能地对逃逸性PM源进行了参数设置。使用开发的模型来获取特定于操作的PM10排放因子(EFs)。这是描述该模型和用于确定EF的野外活动的两篇文章的第一篇。第一部分描述了数学模型及其在两个相对简单的来源中的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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