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CO2-flux measurements above the Baltic Sea at two heights: flux gradients in the surface layer?

机译:波罗的海上方两个高度的二氧化碳通量测量值:表层的通量梯度?

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摘要

The estimation of CO2 exchange between the ocean and the atmosphere is essential to understand the global carbon cycle. The eddy-covariance technique offers a very direct approach to observe these fluxes. The turbulent CO2 flux is measured, as well as the sensible and latent heat flux and the momentum flux, a few meters above the ocean in the atmosphere. Assuming a constant-flux layer in the near-surface part of the atmospheric boundary layer, this flux equals the exchange flux between ocean and atmosphere. The purpose of this paper is the comparison of long-term flux measurements at two different heights above the Baltic Sea to investigate this assumption. The results are based on a 1.5-year record of quality-controlled eddy-covariance measurements. Concerning the flux of momentum and of sensible and latent heat, the constant-flux layer theory can be confirmed because flux differences between the two heights are insignificantly small more than 95 % of the time. In contrast, significant differences, which are larger than the measurement error, occur in the CO2 flux about 35 % of the time. Data used for this paper are published at http://doi.pangaea.de/10.1594/PANGAEA.808714.
机译:估算海洋与大气之间的二氧化碳交换量对于了解全球碳循环至关重要。涡度协方差技术提供了一种非常直接的方法来观察这些通量。在大气中高于海洋几米的地方,测量了湍流的CO2通量,以及显热和潜热通量以及动量通量。假设在大气边界层的近地表部分有恒定通量层,则该通量等于海洋与大气之间的交换通量。本文的目的是比较波罗的海上方两个不同高度的长期通量测量结果,以研究这一假设。结果是基于1.5年的质量控制涡流-协方差测量记录。关于动量的通量以及显热和潜热,可以确认恒定通量层理论,因为两个高度之间的通量差异在95%的时间内都很小。相反,在大约25%的时间内,CO2通量中会出现大于测量误差的显着差异。本文使用的数据发布在http://doi.pangaea.de/10.1594/PANGAEA.808714。

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