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Maize transpiration in response to meteorological conditions

机译:响应气象条件的玉米蒸腾作用

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Differences in transpiration of maize (Zea mays L.) plants in four soil moisture regimes were quantified in a pot experiment. The transpiration was measured by the “Stem Heat Balance” method. The dependence of transpiration on air temperature, air humidity, global solar radiation, soil moisture, wind speed and leaf surface temperature were quantified. Significant relationships among transpiration, global radiation and air temperature (in the first vegetation period in the drought non-stressed variant, r = 0.881**, r = 0.934**) were found. Conclusive dependence of transpiration on leaf temperature (r = 0.820**) and wind speed (r = 0.710**) was found. Transpiration was significantly influenced by soil moisture (r = 0.395**, r = 0.528**) under moderate and severe drought stress. The dependence of transpiration on meteorological factors decreased with increasing deficiency of water. Correlation between transpiration and plant dry matter weight (r = 0.997**), plant height (r = 0.973**) and weight of corn cob (r = 0.987**) was found. The results of instrumental measuring of field crops transpiration under diverse moisture conditions at a concurrent monitoring of the meteorological elements spectra are rather unique. These results will be utilized in the effort to make calculations of the evapotranspiration in computing models more accurate.
机译:在盆栽试验中定量了四种土壤水分模式下玉米(Zea mays L.)植物蒸腾的差异。通过“干热平衡”方法测量蒸腾量。定量分析了蒸腾作用对气温,空气湿度,太阳总辐射,土壤湿度,风速和叶片表面温度的依赖性。发现蒸腾量,全球辐射和气温之间存在显着关系(在干旱非胁迫变体的第一个植被时期,r = 0.881 **,r = 0.934 **)。发现蒸腾作用对叶片温度(r = 0.820 **)和风速(r = 0.710 **)具有决定性的依赖性。在中度和重度干旱胁迫下,土壤水分(r = 0.395 **,r = 0.528 **)显着影响蒸腾作用。随着缺水量的增加,蒸腾作用对气象因子的依赖性降低。发现蒸腾量与植物干物质重量(r = 0.997 **),植物高度(r = 0.973 **)和玉米芯重量(r = 0.987 **)之间具有相关性。在同时监测气象要素光谱的情况下,在不同湿度条件下对大田作物蒸腾进行仪器测量的结果相当独特。这些结果将用于使计算模型中的蒸散量的计算更加准确。

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