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Biological factors dominate the interannual variability of evapotranspiration in an irrigated cropland in the North China Plain

机译:生物因素占据了北方平原灌溉农田中蒸散的际变化

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摘要

Understanding the interannual variability (IAV) and investigating the physical and biological controls on the IAV of evapotranspiration (ET) is fundamental for better simulating the hydrological processes in cropland where ET is the dominant component of water cycle. However, this topic has not been fully studied, although the number of long-term field observations is growing. By using a combination of long-term field observations (10 years) and agro-hydrological modelling, this study attempted to examine the IAV of ET and the physical and biological controls on the IAV of ET in an irrigated cropland in the North China Plain. This study reveals that the IAV of ET was only 7% in the selected dry subhumid area, which was much smaller than that of water supply (i.e., the sum of precipitation and irrigation). Moreover, the water supply was not the primary controlling factor that influenced the IAV of annual ET. Biological factors, including the leaf area index and bulk stomatal conductance, were found to be the dominant contributors to the IAV of annual ET. Irrigation was an essential water source for crop growth, particularly for winter wheat growth, whereas its contribution to the IAV of ET was smaller than that of precipitation because of the sufficient amount of irrigation. This study demonstrates that the variability of biological factors should be adequately represented in eco-hydrological models to accurately simulate the IAV of annual ET.
机译:理解依赖阶段的变异性(IAV)并研究Evapotranspiration(ET)的IAV对IAV的物理和生物学对照,是更好地模拟农田水文过程的基础,其中ET是水循环的主要成分。然而,虽然长期现场观测的数量正在增长,但尚未完全研究该话题。通过使用长期现场观测(10年)和农业水文模拟的组合,该研究试图研究ET的IAV和EAV的IAV IAV在华北平原的灌溉农作物。本研究表明,ET的IAV在所选择的干燥郊区仅为7%,比供水量小于水供应量(即降水和灌溉总和)。此外,供水不是影响年度IAV的主要控制因素。发现包括叶面积指数和散装气孔导度的生物因素是年度EAV的主要贡献者。灌溉是作物生长的必需水源,特别是对于冬小麦生长,而其对ET的IAV的贡献小于降水量,因为灌溉量足够了。本研究表明,生态因素的可变性应在生态水文模型中充分地代表,以准确模拟年度EAV。

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