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Simulating the exchanges of carbon dioxide, water vapor and heat over Changbai Mountains temperate broad-leaved Korean pine mixed forest ecosystem

机译:模拟长白山上的二氧化碳,水蒸气和热量的交换为温带阔叶红松混交林生态系统

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摘要

A process-based ecosystem productivity model BEPS (Boreal Ecosystem Productivity Simulator) was updated to simulate half-hourly exchanges of carbon, water and energy between the atmosphere and terrestrial ecosystem at a temperate broad-leaved Korean pine forest in the Changbai Mountains, China. The BEPSh model is able to capture the diurnal and seasonal variability in carbon dioxide, water vapor and, heat fluxes at this site in the growing season of 2003. The model validation showed that the simulated net ecosystem productivity (NEP), latent heat flux (LE), sensible heat flux (H_s) are in good agreement with eddy covariance measurements with an R~2 value of 0.68, 0.86 and 0.72 for NEP, LE and H_s, respectively. The simulated annual NEP of this forest in 2003 was 300.5 gC/m~2, and was very close to the observed value. Driving this model with different climate scenarios, we found that the NEP in the Changbai Mountains temperate broad-leaved Korean pine mixed forest ecosystem was sensitive to climate variability, and the current carbon sink will be weakened under the condition of global warming. Furthermore, as a process-based model, BEPSh was also sensitive to physiological parameters of plant, such as maximum Rubisco activity (V_(cmax)) and the maximum stomatal conductance (g_(max)), and needs to be carefully calibrated for other applications.
机译:更新了基于过程的生态系统生产力模型BEPS(北方生态系统生产力模拟器),以模拟中国长白山温带阔叶红松林大气与陆地生态系统之间半小时的碳,水和能量交换。 BEPSh模型能够捕获2003年生长期该地点的二氧化碳,水蒸气和热通量的日变化和季节性变化。模型验证表明,模拟的净生态系统生产力(NEP),潜热通量( LE),显热通量(H_s)与涡流协方差测量非常吻合,NEP,LE和H_s的R〜2值分别为0.68、0.86和0.72。 2003年该森林的模拟年NEP为300.5 gC / m〜2,非常接近实测值。通过在不同气候情景下驱动该模型,我们发现长白山温带阔叶红松混交林生态系统的NEP对气候变化敏感,并且在全球变暖的情况下,当前的碳汇将被削弱。此外,作为基于过程的模型,BEPSh还对植物的生理参数敏感,例如最大Rubisco活性(V_(cmax))和最大气孔导度(g_(max)),并且需要针对其他参数进行仔细校准。应用程序。

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