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首页> 外文期刊>Agricultural and Forest Meteorology >Modeling light below tree canopies overestimates net photosynthesis and radiation use efficiency in understory crops by averaging light in space and time
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Modeling light below tree canopies overestimates net photosynthesis and radiation use efficiency in understory crops by averaging light in space and time

机译:在树下檐篷下面的建模光通过在空间和时间的平均光线下,通过平均光线来估计净光合作用和辐射利用效率

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摘要

By averaging in time and/or space, models predict less variable light patterns under tree canopies than in reality. We measured light every minute in 24 positions in a grid under different chestnut orchards, for several clear and overcast days. We also modelled this light with a purposely created 3D, spatially explicit, ray-tracing light interception model, where canopy porosity was calibrated to match measured daily light. Finally, we used both the measured and modeled light patterns transmitted under the tree canopies to estimate the daily net photosynthesis (A(n)) and radiation use efficiency (RUE) of an understory wheat leaf. As expected, modeled light was more uniform than measured light, even at equal daily light. This resulted in large overestimation of daily A(n) and RUE of the understory leaf. Averaging light in time increased the overestimations even further. A sensitivity analysis showed that this overestimation remained substantial over the range of realistic values for leaf photosynthetic parameters (i.e. V-c,V-max, J(max), R-d) of the understory crop.
机译:通过在时间和/或空间中平均,模型预测树檐篷下的可变光图案而不是实际。我们在不同栗子果园的网格中的24个位置测量了每分钟的每一分钟,用于几个清晰阴暗的日子。我们还通过故意创建的3D,空间明确,射线跟踪光拦截光接拦截模型建模了这一光,其中校准了冠层孔隙度以匹配测量的日光。最后,我们使用树檐下方传递的测量和建模光图案来估计林麦叶的每日净光合作用(A(n))和辐射使用效率(RUE)。如预期的那样,即使在每日光线相等,也比测量光更均匀。这导致了大于每日A(n)和林叶的rue。在时间上平均光线甚至增加高度估计。灵敏度分析表明,这种高估在叶片光合参数的叶片光合参数的现实值范围内保持大幅度(即V-C,V-MAX,J(MAX),R-D)的植物值。

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