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Generalized flux-gradient technique pairing line-average concentrations on vertically separated paths

机译:广义通量梯度技术将垂直分离路径上的线平均浓度配对

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Line-averaging optical gas detectors offer new avenues for the indirect estimation of surface/air exchange fluxes. This paper examines an inverse dispersion technique (gFG, for "generalized flux-gradient") that yields an estimate of the gas emission rate Q from surface area sources, based on the difference Delta C between line-averaged mean concentrations along two (or more) paths that are vertically inclined or, if horizontal, are vertically separated. The inversion to extract Q from Delta C can be performed using any satisfactory model of turbulent dispersion over a finite source, motivating the examination here of several analytical solutions to the advection-diffusion equation. Each provides a theoretical value u(*)Delta C/Q for the normalized concentration difference, whence an estimate (Q) over tilde of the flux can be deduced from measured Delta C and u(*) (the latter being the friction velocity, for which any suitable velocity scale could be substituted). Discrepancies between the solutions are explored, and the error that results from wrongly treating the source fetch as infinite is quantified. As the fetch increases, gFG relaxes to the standard flux-gradient technique exploiting the (known) Monin-Obukhov concentration gradient. (C) 2016 The Authors. Published by Elsevier B.V.
机译:线平均光学气体探测器为间接估计表面/空气交换通量提供了新途径。本文研究了一种反向扩散技术(gFG,用于“广义通量梯度”),该技术基于沿着两个(或更多个)的线平均平均浓度之间的差值Delta C来估算表面积源的气体排放速率Q。 )垂直倾斜的路径,如果水平,则垂直分隔。从Delta C提取Q的反演可以使用有限源上湍流弥散的任何令人满意的模型来完成,这激发了对流扩散方程的几种解析解的检验。每个都为归一化浓度差提供了理论值u(*)Delta C / Q,从中可以从测得的Delta C和u(*)推导出通量的斜率上的估计值(Q)(后者是摩擦速度,可以用任何合适的速度刻度代替)。探索了解决方案之间的差异,并量化了由于将源提取错误地视为无限而导致的错误。随着提取量的增加,gFG会利用(已知的)Monin-Obukhov浓度梯度放松至标准流量梯度技术。 (C)2016作者。由Elsevier B.V.发布

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