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Comparative Measurements Of Co2flux Over A Forest Using Closed-Path And Open-Path Co2analysers

机译:使用封闭路径和开放路径Co2分析仪对森林中的Co2flux进行比较测量

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An eddy covariance system using a closed-path CO2analyser was constructed for long-term CO2flux measurements above a forest, and its total frequency response was valuated experimentally. The amplitude and phase responses of the system wereexamined through a preliminary test, in which a prescribed pattern of CO2fluctuation was input to the system. The result showed that the amplitude of the output from the system was attenuated as frequency increased, with a half-power frequency of 0.3 Hz. The phase was delayed by the air sampling through a long tube, but the delay in phase decreased asfrequency increased. We then presented a new technique for the correction of flux loss due to the inadequate system response for the eddy covariance measurements of CO2 flux. Using the present system and the correction technique, diurnal variations in CO2 flux were measured over a temperate deciduous forest on three days in 1997. The results were compared with the CO2fluxes measured with a fast response open-path gas analyser. The CO2fluxes from the closed-path system agreed with those from the open-path system after the Webb, Pearman and Leuning correction was made for the latter. In the present test over a forest, the contribution of the frequency-response correction to the CO2fluxes was small and its averaged percentage was only 3%in the daytime. However, the percentage would likely increase, if the system were applied to a shorter vegetation site where high frequency components are more important. The comparison confirmed that we can obtain correct measurements of CO2flux using the present closed-path system and the correction technique.
机译:建立了一个封闭式二氧化碳分析仪的涡流协方差系统,用于森林上方的长期二氧化碳通量测量,并通过实验评估了其总频率响应。通过初步测试来检查系统的幅度和相位响应,在该测试中,将规定的CO2波动模式输入到系统中。结果表明,系统输出的幅度随频率增加而衰减,半功率频率为0.3 Hz。通过长管进行空气采样会延迟相位,但是相位延迟会随着频率的增加而减小。然后,我们提出了一种新的技术,用于校正由于CO2通量的涡度协方差测量所引起的系统响应不足而引起的通量损失。使用本系统和校正技术,在1997年的3天中测量了一个温带落叶林的CO2通量的日变化。路径气体分析仪。在对Webb,Pearman和Leuning校正后,闭路系统的二氧化碳通量与开路系统的二氧化碳通量一致。在目前的森林测试中,频率响应校正对CO2通量的贡献很小,白天的平均百分比仅为3%。但是,如果将系统应用于高频分量更为重要的较短植被场所,则该百分比可能会增加。比较结果表明,使用当前的封闭路径系统和校正技术,我们可以获得正确的CO2流量测量值。

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