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Convergent approaches to determine an ecosystem's transpiration fraction

机译:确定生态系统蒸腾比例的融合方法

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The transpiration (T) fraction of total terrestrial evapotranspiration (ET), T/ET, can vary across ecosystems between 20-95% with a global average of approximate to 60%. The wide range may either reflect true heterogeneity between ecosystems and/or uncertainties in the techniques used to derive this property. Here we compared independent approaches to estimate T/ET at two needleleaf forested sites with a factor of 3 difference in leaf area index (LAI). The first method utilized water vapor isotope profiles and the second derived transpiration through its functional relationship with gross primary production. We found strong agreement between T/ET values from these two independent approaches although we noted a discrepancy at low vapor pressure deficits (VPD). We hypothesize that this divergence arises because stomatal conductance is independent of humidity at low VPD. Overall, we document significant synoptic-scale T/ET variability but minimal growing season-scale variability. This result indicates a high sensitivity of T/ET to passing weather but convergence toward a stable mean state, which is set by LAI. While changes in T/ET could emerge from a myriad of processes, including aboveground (LAI) or belowground (rooting depth) changes, there was only minimal interannual variability and no secular trend in our analysis of T/ET from the 15year eddy covariance time series at Niwot Ridge. If the lack of trend observed here is apparent elsewhere, it suggests that the processes controlling the T and E fluxes are coupled in a way to maintain a stable ratio.
机译:陆地蒸散量(ET)的蒸腾(T)部分,T / ET,在整个生态系统中可以在20%到95%之间变化,全球平均水平约为60%。广泛的范围可能反映了生态系统之间真正的异质性和/或用于推导此特性的技术的不确定性。在这里,我们比较了在两个针叶林站点估计T / ET的独立方法,其叶面积指数(LAI)的差异为3。第一种方法利用了水蒸气的同位素特征,第二种方法利用了其与总初级生产的功能关系,从而得到了蒸腾作用。我们发现这两种独立方法的T / ET值之间有很强的一致性,尽管我们注意到低蒸气压缺陷(VPD)时存在差异。我们假设出现这种差异是因为在低VPD下气孔电导与湿度无关。总体而言,我们记录了天气尺度上T / ET的明显变化,但生长季节尺度上的变化却很小。该结果表明,T / ET对经过的天气具有很高的敏感性,但趋向于由LAI设定的稳定的平均状态。尽管T / ET的变化可能来自无数过程,包括地上(LAI)或地下(生根深度)变化,但从15年涡度协方差时间开始,我们对T / ET的分析只有很小的年际变化,并且没有长期趋势Niwot Ridge系列。如果在其他地方明显缺乏这种趋势,则表明控制T和E通量的过程以保持稳定比率的方式耦合。

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