首页> 外文期刊>Global change biology >The annual cycles of CO2 and H2O exchange over a northern mixed forest as observed from a very tall tower
【24h】

The annual cycles of CO2 and H2O exchange over a northern mixed forest as observed from a very tall tower

机译:从一个高大的塔上观察到,北部混交林中的CO2和H2O交换的年循环

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We present the annual patterns of net ecosystem-atmosphere exchange (NEE) of CO2 and H2O observed from a 447 m tall tower sited within a mixed forest in northern Wisconsin, USA. The methodology for determining NEE from eddy-covariance flux measurements at 30, 122 and 396 m above the ground, and from CO2 mixing ratio measurements at 11, 30, 76, 122, 244 and 396 m is described. The annual cycle of CO2 mixing ratio in the atmospheric boundary layer (ABL) is also discussed, and the influences of local NEE and large-scale advection are estimated. During 1997 gross ecosystem productivity (947-18 g cm(-2) yr(-1)), approximately balanced total ecosystem respiration (963 +/- 19 g C m(-2) yr(-1)), and NEE of CO2 was close to zero (16 +/- 19g C m(-2) yr(-1) emitted into the atmosphere). The error bars represent the standard error of the cumulative daily NEE values. Systematic errors are also assessed. The identified systematic uncertainties in NEE of CO2 are less than 60 g C m(-2) yr(-1). The seasonal pattern of NEE of CO2 was highly correlated with leaf-out and leaf-fall, and soil thaw and freeze, and was similar to purely deciduous forest sites. The mean daily NEE of CO2 during the growing season (June through August) was -1.3 g C m(-2) day(-1), smaller than has been reported for other deciduous forest sites. NEE of water vapor largely followed the seasonal pattern of NEE of CO2, with a lag in the spring when water vapor fluxes increased before CO2 uptake. In general, the Bowen ratios were high during the dormant seasons and low during the growing season. Evapotranspiration normalized by potential evapotranspiration showed the opposite pattern. The seasonal course of the CO2 mixing ratio in the ABL at the tower led the seasonal pattern of NEE of CO2 in time: in spring, CO2 mixing ratios began to decrease prior to the onset of daily net uptake of CO2 by the forest, and in fall mixing ratios began to increase before the forest became a net source for CO2 to the atmosphere. Transport as well as local NEE of CO2 are shown to be important components of the ABL CO2 budget at all times of the year. [References: 45]
机译:我们介绍了从位于美国威斯康星州北部一片混交林中的447 m高的塔中观察到的CO2和H2O的生态系统-大气净交换(NEE)的年度模式。描述了从地面以上30、122和396 m处的涡率协方差通量测量值以及在11、30、76、122、244和396 m处的CO2混合比测量值确定NEE的方法。还讨论了大气边界层(ABL)中CO2混合比的年循环,并估计了局部NEE和大尺度对流的影响。在1997年期间,生态系统总生产力(947-18 g cm(-2)yr(-1)),生态系统总呼吸大致平衡(963 +/- 19 g C m(-2)yr(-1))和NEE为CO2接近于零(排放到大气中的16 +/- 19g C m(-2)yr(-1))。误差线代表每日累积NEE值的标准误差。还评估系统错误。在NEE中确定的系统不确定性CO2小于60 g C m(-2)yr(-1)。 CO2的NEE的季节模式与叶期和叶期,土壤的融化和冻结高度相关,并且类似于纯落叶林地。在生长季节(6月至8月),CO2的平均每日NEE为-1.3 g C m(-2)day(-1),小于其他落叶林地的报道。水蒸气的NEE在很大程度上遵循CO2的NEE的季节性模式,春季在水蒸气通量增加而吸收CO2之前有所滞后。通常,鲍文比率在休眠季节较高,而在生长季节较低。通过潜在蒸散量归一化的蒸散量显示出相反的模式。塔中ABL中CO2混合比的季节性变化及时导致了NEE的季节性变化:在春季,森林开始每日净吸收CO2之前,CO2混合比开始下降。在森林成为向大气中排放二氧化碳的净来源之前,秋天的混合比率开始增加。运输和当地NEE的二氧化碳被证明是一年中所有时间ABL CO2预算的重要组成部分。 [参考:45]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号