Rinne J, Douffet T, Prigent Y, Durand P
Centre National de Recherches Météorologiques-Météo-France, 42 avenue G. Coriolis, 31057 Toulouse Cedex 1, France.
Environ Pollut. 2008 Apr;152(3):630-5. doi: 10.1016/j.envpol.2007.06.063. Epub 2007 Aug 16.
A field intercomparison experiment of the disjunct eddy covariance (DEC) and the conventional eddy covariance (EC) techniques was conducted over a grass field. The half-hourly water vapor fluxes measured by the DEC were within the estimated uncertainty from the fluxes measured by the EC. On the average there was a slight overestimation (<10%) of the fluxes measured by the DEC during the day and underestimation during the night as compared to the fluxes measured by the EC. As this bias does not appear in the simulated DEC measurements it is likely to be due to instrumental problems. The insensitivity of the quality of the fluxes measured by the DEC method to the deficiencies in the gas analysis shows the robustness of this new approach for measuring the surface-atmosphere exchange of trace gases.
在一片草地进行了分离涡度协方差(DEC)和传统涡度协方差(EC)技术的野外对比试验。DEC测量的半小时水汽通量在EC测量通量的估计不确定度范围内。与EC测量的通量相比,平均而言,白天DEC测量的通量略有高估(<10%),夜间则低估。由于这种偏差在模拟的DEC测量中未出现,很可能是由于仪器问题。DEC方法测量的通量质量对气体分析缺陷不敏感,表明了这种测量痕量气体地表-大气交换新方法的稳健性。