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Direct advection measurements do not help to solve the night-time CO2 closure problem: Evidence from three different forests

机译:直接对流测量无助于解决夜间CO2封闭问题:来自三种不同森林的证据

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The ADVEX project involved conducting extensive advection measurements at three sites, each with a different topography. One goal of the project was to measure the [CO2] balance under night-time conditions, in an attempt to improve NEE estimates.Four towers were arranged in a square around a main tower, with the sides of the square about 100 m long. Equipped with 16 sonic anemometers and [CO2] sampling points, the towers were installed to measure vertical and horizontal advection of [CO2]. Vertical turbulent fluxes were measured by an eddy covariance system at the top of the main tower.The results showed that horizontal advection varied greatly from site to site and from one wind sector to another, the highest values being reached when there were large friction velocities and fairly unstable conditions. There was less variation in vertical advection, the highest values being reached when there were low friction velocities and stable conditions.The night-time NEE estimates deduced from the mass balance were found to be incompatible with biologically driven fluxes because (i) they varied strongly from one wind sector to another and this variation could not be explained in terms of a response of the biologic flux to climate, (ii) their order of magnitude was not realistic and (iii) they still showed a trend vs. friction velocity.From a critical analysis of the measurement and data treatment we concluded that the causes of the problem are related to the representativeness of the measurement (control volume size, sampling resolution) or the hypotheses underlying the derivation of the [CO2] mass balance (ignoring the horizontal turbulent flux divergence). This suggests that the improvement of eddy flux measurements by developing an advection completed [CO2] mass balance at night would be practically difficult. (C) 2010 Elsevier B.V. All rights reserved.
机译:ADVEX项目涉及在三个地点进行广泛的对流测量,每个地点具有不同的地形。该项目的一个目标是在夜间条件下测量[CO2]平衡,以改善NEE估算。四座塔围绕主塔布置成正方形,正方形的边长约100 m。配备了16个声波风速计和[CO2]采样点,安装了这些塔以测量[CO2]的垂直和水平对流。主塔顶部的涡流协方差系统测量了垂直湍流,结果表明,水平对流在每个站点之间以及从一个风向到另一个风向都变化很大,当摩擦速度和风速较大时达到最高值。相当不稳定的条件。垂直对流变化较小,在低摩擦速度和稳定条件下达到最高值。从质量平衡推论得出的夜间NEE估计值与生物驱动通量不兼容,因为(i)它们的变化很大从一个风向另一个风向,这种变化不能用生物通量对气候的响应来解释,(ii)它们的数量级不切实际,并且(iii)它们仍显示出趋势与摩擦速度的关系。通过对测量和数据处理的严格分析,我们得出结论,问题的原因与测量的代表性(控制量大小,采样分辨率)或[CO2]质量平衡推导的基础假设(忽略水平)有关。湍流发散)。这表明通过在夜间建立对流完成的[CO2]质量平衡来改善涡流测量非常困难。 (C)2010 Elsevier B.V.保留所有权利。

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