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Simulation study for gaseous fluxes from an area source using computed tomography and optical remote sensing

机译:使用计算机断层扫描和光学遥感来自区域源的气态磁通的仿真研究

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This paper presents a new approach to quantify emissions from fugitive gaseous air pollution sources. We combine Computed Tomography (CT) with Path-Integrated Optical Remote Sensing (PI-ORS) concentration data in a new field beam geometry. Path integrated concentrations are sampled in a vertical plane downwind from the source along several radial beam paths. An innovative CT technique, which applies the Smooth Basis Function Minimization (SBFM) method to the beam data in conjunction with measured wind data, is used to estimate the total flux from an area source. We conducted simulation study to evaluate the proposed methodology under two beam geometry and configurations. This approach was found to be robust for a wide range of fluctuating wind directions. In the very sparse beam geometry we examined (5 beam paths), successful emission rates were retrieved over a 70 degree range of wind directions.
机译:本文介绍了量化逃逸气态空气污染源排放的新方法。我们将计算机断层扫描(CT)与新的场梁几何形状中的路径集成的光遥感(PI-OR)浓度数据相结合。路径集成浓度在沿源沿几个径向梁路径从源沿源平面进行采样。一种创新的CT技术,将顺利基础函数最小化(SBFM)方法与测量的风数据结合在一起,用于估计区域源的总通量。我们进行了仿真研究,以评估两个梁几何形状和配置下的提出方法。发现这种方法对于广泛的波动风向是鲁棒的。在我们检查的非常稀疏的光束几何形状中(5个光束路径),在70度的风向范围内检索成功的发射速率。

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