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Turbulent carbon exchange in very stable conditions

机译:在非常稳定的条件下进行湍流碳交换

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Turbulent fluxes obtained using the conventional eddy covariance approach result in erratic results with large time fluctuations in extremely stable conditions. This can limit efforts to estimate components of the nocturnal energy budget and respiratory CO fluxes. Well-organized fluxes that show a clear dependence on turbulent intensity were obtained when multiresolution decomposition was used to estimate turbulent exchanges. CO, heat and water vapour fluxes were observed at a site in the eastern Amazon basin that had been cleared for agricultural purposes. Temporal scales of the carbon transfer were determined and shown to be similar to those of latent heat, but as much as three times larger than those of sensible heat. CO eddy diffusivities at the temporal scales on which most of the vertical CO exchange occurs are shown to be 50 times larger than the eddy diffusivity for heat. A process associated with the vertical scale of the scalar accumulation layer is suggested to explain these different scales and turbulent diffusivities of carbon and sensible heat transfer. For an appreciable range of turbulence intensities, the observed vertical turbulent carbon exchange is insufficient to account for the locally respired CO estimated independently. Evidence that shallow drainage currents may account for this is given.
机译:使用常规涡旋协方差方法获得的湍流导致在非常稳定的条件下时间波动较大的不稳定结果。这可能会限制估算夜间能量预算和呼吸系统CO通量组成部分的工作。当使用多分辨率分解估计湍流交换时,获得了组织良好的通量,这些通量显示出对湍流强度的明显依赖性。在东部亚马逊流域的一个已被清理用于农业目的的地点观察到了CO,热和水蒸气通量。确定了碳转移的时间尺度,并显示出与潜热相似,但比显热大三倍。在发生大部分垂直CO交换的时间尺度上,CO涡流扩散率比热的涡流扩散率大50倍。建议使用与标量积累层的垂直标度相关的过程来解释这些不同的标度以及碳的湍流扩散和显热传递。对于一定范围的湍流强度,观察到的垂直湍流碳交换不足以解释独立估算的局部呼吸的CO。给出了浅层排水流可能造成这一现象的证据。

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