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首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Parametrization of two photosynthesis models at the canopy scale in a northern boreal Scots pine forest
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Parametrization of two photosynthesis models at the canopy scale in a northern boreal Scots pine forest

机译:北方寒带苏格兰松林冠层尺度上两个光合作用模型的参数化

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摘要

In this work, eddy covariance data from a northern boreal Scots pine (Pinus sylvestris) stand were used in the parametrization of two up-scaled leaf-level photosynthesis models. The parametrization was carried out by eddy covariance data inversion. The biochemically based Farquhar model parameters, the maximum rate of electron transport (J(max)) and maximum rate of carboxylation [V-c(max)], were both obtained from the temperature responses measured by the eddy covariance. The semi-empirical model, based on optimizing water use and carbon gain, was parametrized according to the seasonal behaviour of the parameter ss. The parametrization of the models was performed for the year 2001, while 2002 was used as a test year to study the models' capabilities. Both of the models tracked daily CO2 assimilation fairly well, reaching the high growing-season rates in mid-June and starting the autumn drawdown at the beginning of September. The incapability of the models to track the diminishing Of CO2 fluxes during very dry days brings up the issue of combining a soil model into the canopy model. The biochemical model parameters have temperature responses that change during the growing season. The biochemical model responds more to the temperature, whereas the semi-empirical model is strongly driven by the light level.
机译:在这项工作中,北北方苏格兰松(Pinus sylvestris)林分的涡动协方差数据被用于两个放大的叶片水平光合作用模型的参数化。通过涡度协方差数据反演进行参数化。基于生化的Farquhar模型参数,最大电子传输速率(J(max))和最大羧化速率[V-c(max)]均从通过涡度协方差测量的温度响应获得。根据参数ss的季节性行为,对基于优化用水和碳获取的半经验模型进行了参数化。模型的参数化是在2001年进行的,而2002年则是测试模型性能的测试年。这两个模型都很好地跟踪了每天的CO2同化,在6月中旬达到了很高的生长季节率,并在9月初开始了秋天的下降。模型无法在非常干燥的日子追踪二氧化碳通量的减少,这带来了将土壤模型组合到冠层模型中的问题。生化模型参数具有在生长期变化的温度响应。生化模型对温度的响应更大,而半经验模型受光水平的强烈驱动。

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