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首页> 外文期刊>European Journal of Agronomy >Leaf wetness duration in sunflower (Helianthus annuus): analysis of observations, measurements and simulations.
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Leaf wetness duration in sunflower (Helianthus annuus): analysis of observations, measurements and simulations.

机译:向日葵(向日葵)的叶片湿润持续时间:观测,分析和模拟的分析。

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摘要

The presence of free water on a leaf surface caused by dew is the result of the radiative balance determined by the interactions between the canopy and the atmosphere. Leaf wetness duration (LWD) depends on leaf and canopy characteristics (exposure, position on the plant, etc.). To study the LWD in a horizontal canopy, a set of sensors were placed inside a sunflower (Helianthus annuus) experimental field and the records were compared with visual observations. An agrometeorological station was installed outside the crop to collect the variables necessary to feed a LWD model. The simulations were compared both to sensor measurements and to visual observations. The main aims were the verification of the sensor performances in the detection of dew and the analysis of LWD spatial variability inside the crop canopy. The potential of simulation models as an alternative to field instruments was also investigated. Our results showed that in sunflower canopy, organised in different layers, the LWD increases with height in the canopy but the sensors are not always able to reproduce the observed variability. The use of models can be considered as an operational procedure but attention should be paid to their calibration..
机译:由露水引起的叶片表面自由水的存在是由冠层和大气之间的相互作用所决定的辐射平衡的结果。叶片湿润持续时间(LWD)取决于叶片和冠层特征(暴露,植物位置等)。为了研究水平顶棚中的随钻测井,将一组传感器放置在向日葵(Helianthus annuus)实验田中,并将记录与视觉观察进行比较。在农作物外部安装了一个农业气象站,以收集喂入随钻测井模型所需的变量。将模拟与传感器测量结果和视觉观察结果进行了比较。主要目的是验证传感器在露水检测中的性能以及对作物冠层内部随钻测井空间变异性的分析。还研究了模拟模型替代现场仪器的潜力。我们的结果表明,在不同层次组织的向日葵冠层中,随钻测井仪随冠层高度的增加而增加,但传感器并不总是能够再现观察到的变化。模型的使用可以看作是一个操作程序,但应注意对其进行校准。

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