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Estimating annual carbon dioxide eddy fluxes using open-path analysers for cold forest sites.

机译:使用寒冷森林站点的开放路径分析仪估算每年的二氧化碳涡流。

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Annual net ecosystem production (NEP) was estimated at three boreal forest sites where open-path infrared gas analysers were used in eddy covariance systems. The analysers showed apparent ecosystem uptake of carbon dioxide during frozen conditions where small net respiration was expected. Previous studies have shown this to be largely caused by instrument heating creating an additional heat flux that is not used in density corrections. A set of meteorological conditions where good data could be extracted in cold temperatures was not evident. Annual NEP was evaluated based on estimates that used a heating correction of Burba et al. (2008) or removal of data when air temperature <0 degrees C, with replacement using a regression function based on soil temperature. The methods agreed within+or-0.5 t C ha-1 y-1 which is similar to the potential bias that could be caused by density corrections if accounting for energy balance closure at some sites. Annual NEP (+or-0.5 t C ha-1 y-1) for boreal forest sites that had experienced stand-replacing fire was: a 6-year-old site was losing 0.6, a 15-year-old site was gaining 0.9, and a 27-year-old site was losing 0.8, for 2-3-year averages. It is difficult to reduce the uncertainty in annual NEP estimates at these boreal sites because of the long cold periods. Cold-weather anomalies have been observed by other researchers, but this has not been a universal problem.
机译:在三个寒带林地估计了年净生态系统产量(NEP),在涡度协方差系统中使用了开放路径红外气体分析仪。分析仪显示,在预计会有较小净呼吸的冰冻条件下,生态系统明显吸收了二氧化碳。以前的研究表明,这主要是由于仪器加热产生了额外的热通量,该热通量未在密度校正中使用。在低温下可以提取良好数据的一组气象条件并不明显。基于使用Burba等人的加热校正的估算值来评估年度NEP。 (2008)或在气温<0摄氏度时删除数据,并使用基于土壤温度的回归函数进行替换。在+或-0.5 t C ha -1 y -1 范围内达成一致的方法,类似于考虑能量平衡关闭时密度校正可能引起的潜在偏差。在某些站点。经历过林木替换生火的北方森林站点的年NEP(+或-0.5 t C ha -1 y -1 )为:一个6岁的站点损失了0.6,有15年历史的网站获得了0.9,而有27年历史的网站则失去了0.8,为2-3年的平均值。由于寒冷时期长,很难减少这些北部地区的年度NEP估算的不确定性。其他研究人员也观察到了寒冷天气异常,但这并不是一个普遍的问题。

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