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Regional estimates of net ecosystem-atmosphere exchange of carbon dioxide over a heterogeneous ecosystem.

机译:生态系统-大气在异类生态系统中二氧化碳净交换的区域估计。

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摘要

The net ecosystem-atmosphere exchange of CO2 (NEE) is estimated over a heterogeneous ecosystem in the 40x40km2 region centered at the WLEF tall tower. Flux aggregation and atmospheric boundary layer (ABL) budget methods are used. CO2 fluxes measured at three levels of the tower are decomposed in the growing season to infer the CO 2 fluxes for six stand types in the tower footprint area. The optimal solutions are estimated for the parameters in two ecosystem models for each stand type. Differences in the parameters and fluxes among stand types are consistent with general expectations. The inferred fluxes are compared to observations from two stand-level eddy-covariance flux towers, implying that the six stand classification scheme is insufficient to capture all variability in stand characteristics relevant to CO2 exchange. Significant uncertainty in aggregated fluxes exists due to the classification schemes used. A new approximate analytical model is introduced to predict the footprint for flux measurements in the lower part of the mixed layer. The ABL budget method is used to infer regional NEE by using the vertical profile of CO 2 mixing ratios measured at the tall tower. In the nocturnal boundary layer, the cases under very stable or nearly-neutral conditions are screened out due to systematic errors. Regional NEE is bounded by the current tower measurements. The range of the effects of horizontal advection of CO 2 on daytime NEE estimates is estimated by the measurements of the spatial distribution of water vapor. Regional NEE estimates from the two methods are compared with each other and with those reported in the literature. In the dormant season, differences among all estimates are small and NEE measured at the WLEF tower might be an acceptable approximation of NEE in the region. This is not true in the growing season. The cumulative regional NEE values are -103+/-50 and -175+/-60gC m-2 in 2000 and 2003, respectively, suggesting that the region is a net sink of CO2. Those values are significantly different from those measured at individual towers. It is inappropriate simply to extend fluxes measured at individual towers to a larger region.
机译:在以WLEF高塔为中心的40x40km2区域中,在一个异构生态系统中,估算了生态系统与大气之间的净二氧化碳交换量(NEE)。使用了通量聚集和大气边界层(ABL)预算方法。在生长期中,在塔的三个高度处测量的CO2通量会分解,以推断出塔架占地面积中六种立式类型的CO 2通量。针对每种林分类型,在两个生态系统模型中为参数估计了最佳解决方案。林分类型之间参数和通量的差异与总体预期一致。将推断的通量与来自两个林分级涡流-协方差通量塔的观测值进行比较,这表明六个林分分类方案不足以捕获与CO2交换相关的林分特性中的所有可变性。由于所使用的分类方案,聚集通量存在很大的不确定性。引入了一种新的近似分析模型,以预测混合层下部的通量测量足迹。 ABL预算法用于通过在高层塔架上测量的CO 2混合比的垂直分布来推断区域NEE。在夜间边界层,由于系统错误,筛选出处于非常稳定或接近中性的情况。区域NEE受当前塔测量的限制。通过对水蒸气的空间分布进行测量,可以估算出CO 2水平对流对白天NEE估计值的影响范围。将两种方法的区域NEE估计值相互比较,并与文献中报道的估计值进行比较。在休眠季节,所有估计值之间的差异很小,并且在WLEF塔测得的NEE可能是该地区NEE的可接受近似值。在生长季节情况并非如此。累积的区域NEE值在2000年和2003年分别为-103 +/- 50和-175 +/- 60gC m-2,这表明该地区是二氧化碳的净汇。这些值与在各个塔上测得的值明显不同。仅仅将在单个塔架上测得的通量扩展到更大的区域是不合适的。

著录项

  • 作者

    Wang, Weiguo.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Physics Atmospheric Science.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);环境科学基础理论;
  • 关键词

  • 入库时间 2022-08-17 11:41:27

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