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Measuring eddy covariance fluxes of ozone with a slow-response analyser

机译:用慢响应分析仪测量臭氧的涡流协方差通量

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摘要

Ozone (O_3) fluxes above a temperate mountain grassland were measured by means of the eddy covariance (EC) method using a slow-response O_3 analyser. The resultant flux loss was corrected for by a series of transfer functions which model the various sources of high- and, in particular, low-pass filtering. The resulting correction factors varied on average between 1.7 and 3.5 during night and daytime, respectively. A cospectral analysis confirmed the accuracy of this approach. O_3 fluxes were characterised by a comparatively large random uncertainty, which during daytime typically amounted to 60%. EC O_3 fluxes were compared against O_3 flux measurements made concurrently with the flux-gradient (FG) method. The two methods generally agreed well, except for a period between sunrise and early afternoon, when the FG method was suspected of being affected by the presence of photochemical sources/sinks. O_3 flux magnitudes and deposition velocities determined with the EC method compared nicely with the available literature from grassland studies. We conclude that our understanding of the causes and consequences of various sources of flux loss (associated with any EC system) has sufficiently matured so that also less-than-ideal instrumentation may be used in EC flux applications, albeit at the cost of relatively large empirical corrections.
机译:使用慢响应O_3分析仪,通过涡度协方差(EC)方法测量了温带山区草地上的臭氧(O_3)通量。通过一系列传递函数对最终的磁通损耗进行校正,这些传递函数对高通滤波,尤其是低通滤波的各种源进行建模。最终的校正因子在夜间和白天分别平均在1.7和3.5之间变化。共同光谱分析证实了这种方法的准确性。 O_3通量的特征在于相对较大的随机不确定性,白天的典型不确定性通常为60%。将EC O_3通量与通过通量梯度(FG)方法同时进行的O_3通量测量进行了比较。两种方法总体上吻合得很好,除了日出和下午之间的这段时间,当时怀疑FG方法受光化学源/汇的影响。用EC方法测得的O_3通量大小和沉积速度与草地研究的现有文献很好地比较。我们得出的结论是,我们对各种磁通损耗源(与任何EC系统相关)的原因和后果的理解已经足够成熟,因此,尽管成本相对较高,但在EC磁通应用中也可以使用不理想的仪器实证更正。

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