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Comparative measurements of water vapor fluxes over a tall forest using open- and closed-path eddy covariance system

机译:使用开放路径和闭合路径涡动协方差系统比较高大森林上的水蒸气通量

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Eddy covariance using infrared gas analyzes has been a useful tool for gas exchange measurements between soil, vegetation and the atmosphere. So far, comparisons between the open- and closed-path eddy covariance (CP) system have been extensively made on COsub2/sub flux estimations, while lacking in the comparison of water vapor flux estimations. In this study, the specific performance of water vapor flux measurements of an open-path eddy covariance (OP) system was compared against a CP system over a tall temperate forest in northeastern China. The results show that the fluxes from the OP system (iLE/isubop/sub) were generally greater than the iLE/isubcp/sub though the two systems shared one sonic anemometer. The tube delay of closed-path analyzer depended on relative humidity, and the fixed median time lag contributed to a significant underestimation of iLE/isubcp/sub between the forest and atmosphere, while slight systematic overestimation was also found for covariance maximization method with single broad time lag search window. After the optimized time lag compensation was made, the average difference between the 30 min iLE/isubop/sub and iLE/isubcp/sub was generally within 6.0 %. Integrated over the annual cycle, the CP system yielded a 5.1 % underestimation of forest evapotranspiration as compared to the OP system measurements (493 vs. 469 mm yrsup−1/sup). This study indicates the importance to estimate the sampling tube delay accurately for water vapor flux calculations with closed-path analyzers, and it also suggests that some of the imbalance of the surface energy budget in flux sites is possibly caused by the systematic underestimation of water vapor fluxes measured with closed-path eddy covariance systems.
机译:使用红外气体分析的涡度协方差一直是用于土壤,植被和大气之间气体交换测量的有用工具。到目前为止,在CO 2 通量估计中已经广泛进行了开路和闭路涡流协方差(CP)系统之间的比较,而缺少水蒸气通量估计的比较。在这项研究中,比较了中国东北高寒带森林的开放路径涡动协方差(OP)系统的水蒸气通量测量与CP系统的特定性能。结果表明,尽管来自OP系统( LE op )的通量通常大于 LE cp 这两个系统共享一个声速计。闭路分析仪的管延迟取决于相对湿度,固定的中值时间滞后导致森林与大气之间的 LE cp 大大低估,而系统的对于单个宽时滞搜索窗口的协方差最大化方法,也发现过高估计。进行优化的时滞补偿后, LE op 和 LE cp 30分钟的平均差为通常在6.0%以内。与OP系统的测量值相比(493 vs. 469 mm yr &min ;; 1 ),CP系统在年度周期中的综合作用使森林蒸散量低估了5.1%。这项研究表明使用闭路分析仪准确估算采样管延迟对于水蒸气通量计算的重要性,并且还表明通量场中表面能收支的某些不平衡可能是由于水蒸气的系统性低估引起的通量采用闭路涡动协方差系统测得。

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