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Multi-scale evapotranspiration of summer maize and the controlling meteorological factors in north China

机译:华北地区夏玉米多尺度蒸散量及气象因子的控制

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Evapotranspiration (ET) scale effect influences the understanding of water and energy balance processes at different scales. However, there are fewer studies about the relationships between multi-scale ET and the controlling meteorological factors. In this study, the variations in leaf and plant transpiration and farmland ET of summer maize were systematically analyzed using three-successive-year data from an irrigation experiment station in north China, and the meteorological factors affecting ET at different scales were analyzed based on multivariate regression. The main findings include (1) the transpiration rate (T-r) and stomatal conductance (g(s)) of sun and shade leaves reduced with the reduction of photosynthetically active radiation (PAR), and the T-r and g(s) in shade leaves were about half of sun leaves. When the differences in PAR were smaller, leaf T-r and g(s) at lower part of canopy were slightly lower than those at middle and upper parts of canopy. (2) The sap flow rate (plant transpiration) of summer maize was related to the net radiation but lagged 1 h. (3) Diurnal variation in latent heat flux (lambda ET) of summer maize was similar to that in net radiation but lagged slightly. AFT, sensible heat flux and ground heat flux accounted for 66.9-70.7, 23.4-26.1 and 4.0-9.2% of net radiation over the whole growing period, respectively. The Bowen ratio ranged from 0.33 to 0.37 over the whole growing period, and peaked at around 10:00 a.m. (4) Leaf transpiration and farmland ET can be characterized by net radiation, air temperature, vapor pressure deficit and wind speed, but plant transpiration cannot be well characterized by them, possibly due to the change of stored water in the stalk. (C) 2015 Elsevier B.V. All rights reserved.
机译:蒸散(ET)尺度效应影响不同尺度下水和能量平衡过程的理解。但是,关于多尺度ET与控制气象因子之间关系的研究较少。本研究利用华北灌溉试验站连续3年的数据,系统分析了夏玉米叶片,植物蒸腾作用和农田ET的变化,并基于多变量分析了不同尺度下影响ET的气象因素。回归。主要发现包括:(1)随着光合有效辐射(PAR)的减少,太阳和遮荫叶片的蒸腾速率(Tr)和气孔导度(g(s))降低,遮荫叶片的Tr和g(s)降低大约有一半的太阳叶子。当PAR的差异较小时,冠层下部的叶片T-r和g(s)略低于冠层中部和上部的叶片。 (2)夏玉米的汁液流率(植物蒸腾)与净辐射有关,但滞后1 h。 (3)夏季玉米的潜热通量(lambda ET)的日变化与净辐射相似,但略有滞后。在整个生长期,AFT,显热通量和地热通量分别占净辐射的66.9-70.7%,23.4-26.1%和4.0-9.2%。在整个生长期中,Bowen比值在0.33至0.37之间,并在上午10:00达到峰值。(4)叶片蒸腾作用和农田ET的特征在于净辐射,气温,蒸气压赤字和风速,但植物蒸腾作用它们可能无法很好地表征它们,这可能是由于茎中存储的水的变化所致。 (C)2015 Elsevier B.V.保留所有权利。

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