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Measurements of eddy correlation oxygen fluxes in shallow freshwaters: Towards routine applications and analysis

机译:浅淡水中涡流相关氧通量的测量:常规应用和分析

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摘要

Benthic fluxes of dissolved oxygen are measured in a shallow reservoir using the eddy correlation technique. Flux variations depict the diurnal production-consumption cycle, with daytime oxygen release following the solar radiation trend. The average nighttime uptake of -40 +/- 11 mmol m-2 d-1 is in excellent agreement with the rate of -35 +/- 3 mmol m-2 d-1 derived from sediment oxygen microprofiles. Separating large-scale advective and turbulent fluctuations is a crucial and uncertain component of the flux computation and the largest source of error. To compensate for the 2.25 s oxygen sensor response time, the oxygen flux calculations are corrected by only ~5% using a first-order spectral enhancement. This work demonstrates that only a slightly faster oxygen sensor would be needed to resolve the entire flux spectrum. The 18 hours of data are the first measurements obtained in a freshwater reservoir that capture the diurnal oxygen production-consumption cycle.
机译:使用涡流相关技术在浅层储层中测量溶解氧的底流。通量变化描述了日间的生产-消费周期,日光中的氧气随太阳辐射趋势而释放。夜间平均摄取-40 +/- 11 mmol m-2 d-1与从沉积物氧微谱图得出的-35 +/- 3 mmol m-2 d-1的速率非常一致。分开大的对流和湍流波动是通量计算的关键和不确定组成部分,也是最大的误差来源。为了补偿2.25 s的氧气传感器响应时间,使用一阶光谱增强功能仅将氧气通量计算校正约5%。这项工作表明,只需要稍快一点的氧气传感器即可解析整个通量谱。这18个小时的数据是在淡水水库中获得的首个测量值,这些数据捕获了昼夜的氧气生产-消耗周期。

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