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Practical applicability of high frequency correction theories to CO2 flux measured by a closed-path system

机译:高频修正理论对闭路系统测量的CO2 通量的实际适用性

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摘要

The theoretical correction of CO2 fluxes for high frequency attenuation in closed-path systems was re-summarized and its applicability examined using both measurements obtained at an Asiaflux forest site and empirical transfer functions used in previous studies. For our measurement system, the theoretical transfer function was applicable to high frequency correction, even when condensation occurred in the sampling line. Further, in respect to some measurement systems described in previous studies, it was found that the theoretical function was potentially applicable along with the empirical functions used. Meanwhile, in some systems significant errors could not be resolved by re-estimation of the theories. In these systems, because of undefined buffering effects, the actual response lag time decided by the maximum covariance method or by measurement of the system response time using tracer gas was significantly different from the lag time calculated from the tube dimensions and the measured flow rate. If the average flow rate calculated by the actual lag time was used to determine the theoretical function, the theoretical function became closer to, and sometimes agreed with, the empirical function. Any remaining deviation from each function might be associated with pressure fluctuations, but this problem was unable to be examined here. The results suggested that an empirical formulation for each site is considered applicable rather than a theoretical approach, although the theories are being developed to practical application.
机译:重新总结了闭路系统中用于高频衰减的CO2通量的理论修正,并使用在Asiaflux森林站点获得的测量值和先前研究中使用的经验传递函数来检验其适用性。对于我们的测量系统,理论上的传递函数适用于高频校正,即使在采样管线中发生冷凝时也是如此。此外,对于先前研究中描述的某些测量系统,发现理论功能与所使用的经验功能一起可能适用。同时,在某些系统中,无法通过重新估计理论来解决重大错误。在这些系统中,由于未定义的缓冲效果,通过最大协方差方法或通过使用示踪气体测量系统响应时间所决定的实际响应滞后时间与根据管尺寸和测得的流速计算出的滞后时间明显不同。如果将通过实际滞后时间计算出的平均流量用于确定理论函数,则理论函数将变得更接近经验函数,有时也与经验函数一致。每个功能的任何剩余偏差都可能与压力波动有关,但是此问题无法在此处进行检查。结果表明,尽管理论正在发展为实际应用,但每个站点的经验公式被认为是适用的,而不是理论方法。

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