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Eddy-correlation measurements of benthic fluxes under complex flow conditions: Effects of coordinate transformations and averaging time scales

机译:复杂流动条件下底流通量的涡相关测量:坐标转换和平均时间尺度的影响

摘要

Eddy-correlation measurements of sediment oxygen uptake rates in aquatic systems are increasingly used to obtain areal-averaged fluxes with a high temporal resolution. Here we discuss the effects of coordinate rotation and averaging time scale for Reynolds decomposition on flux estimates. Using 119 hours of continuous eddy-correlation measurements of sediment oxygen fluxes in an impounded river, we demonstrate that rotation of measured current velocities into streamline coordinates can be a crucial and necessary step in data processing under complex flow conditions in non-flat environments with complex topography. We found that under these conditions neither time series detrending nor coordinate rotation can remove low-frequency velocity variations completely. These variations result in spurious flux contributions and in a pronounced dependence of the derived fluxes on averaging time scales. Application of the planar fit transformation was found to provide an alternative means for transforming measured velocities into streamline coordinates for longer-term observations. The observed sensitivity of estimated fluxes to coordinate transformation and selection of averaging time scale is discussed in the context of the theoretical concepts underlying eddy-correlation measurements and a set of recommendations for planning and analyses of flux measurements are derived.
机译:水生系统中沉积物氧气吸收率的涡旋相关测量越来越多地用于获得具有高时间分辨率的平均面积通量。在这里,我们讨论了雷诺分解的坐标旋转和平均时间尺度对通量估计的影响。使用119个小时的连续涡旋相关测量来测定水流中沉积物氧通量,我们证明了在非平坦环境中,在复杂的流动条件下,将测得的流速旋转成流线坐标可能是数据处理中至关重要的必要步骤。地形。我们发现,在这些条件下,时间序列去趋势和坐标旋转都不能完全消除低频速度变化。这些变化会导致虚假的通量贡献,并导致导出的通量明显依赖于平均时间标度。发现平面拟合变换的应用为将测得的速度转换成流线型坐标提供了另一种方法,可进行长期观测。在涡流相关测量基础的理论概念的背景下,讨论了观测到的估计通量对坐标转换和平均时间尺度的选择的敏感性,并得出了一组规划和分析通量测量的建议。

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