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首页> 外文期刊>Acta Horticulturae >Ability of multiplicative models to simulate stomatal resistance along plant growth: application to New Guinea impatiens grown in a greenhouse
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Ability of multiplicative models to simulate stomatal resistance along plant growth: application to New Guinea impatiens grown in a greenhouse

机译:乘法模型模拟植物生长的气孔抗性的能力:在温室中生长的新豚鼠的应用

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摘要

In greenhouses, optimized plant crop management is crucial for environmental reasons and for maintaining the competitiveness of the horticultural sector. In particular, optimizing water consumption is of high interest but requires predictive models needing leaf stomatal resistance (Rs) estimation. Until now, most studies deduced Rs by inverting the energy balance equation. On contrary, the objective of the present study is to model Rs for leaves on the entire height of the canopy from direct measurements with a porometer. The model was first established and validated for the upper leaves and then tested for the within-canopy leaves. In this prospect, New Guinea impatiens plants were cultivated in containers inside a greenhouse during 16 weeks underwater-comfort irrigation management. Global radiation, temperature and relative humidity of the air were continuously recorded while the stomatal resistance was measured at the top and in the middle of the canopy. Two models involving global radiation and vapor pressure deficit (Jarvis multiplicative models) were tested by using two parameterization methods. The first method consisted in deducing the model parameters independently for each week. Results showed significant differences between the parameters and a generic model could not be obtained. In the second method the model parameters were obtained from a subset of experimental data. Validating the model on the remaining datasets was quite conclusive. By extrapolating the obtained model from the upper leaves to the middle canopy leaves using the Beer-Lambert law to estimate the global radiation, acceptable correlations were reached between estimated and measured Rs. Results were however not as good as those obtained for the upper leaves.
机译:在温室中,优化的植物作物管理对于环境原因至关重要,并保持园艺行业的竞争力。特别是,优化水消耗具有高兴趣,但需要预测模型需要叶形气孔抗性(RS)估计。到目前为止,大多数研究通过反转能量平衡方程来推导RS。相反,本研究的目的是通过使用比较计的直接测量来模拟Rs的叶片。首先是建立和验证上叶的模型,然后针对冠状内叶进行测试。在这一前景中,在16周的水下舒适的灌溉管理中,在温室内的容器中培养了新的豚鼠植物。连续记录空气的全局辐射,温度和相对湿度,同时在顶部和冠层中间测量气孔抗性。使用两个参数化方法测试涉及全局辐射和蒸气压缺损(Jarvis乘法模型)的两种模型。第一种方法包括为每周独立地进行模型参数。结果表明,参数与通用模型之间的显着差异。在第二种方法中,从实验数据的子集获得模型参数。在剩余数据集上验证模型是非常定的。通过将所获得的模型从上部叶片推断到中间冠层,使用Beer-Lambert Law来估计全球辐射,估计和测量的Rs之间达到可接受的相关性。然而,结果不如上叶所获得的那些。

著录项

  • 来源
    《Acta Horticulturae》 |2017年第1期|共8页
  • 作者单位

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

    Agrocampus Quest UP EPHor Environmental Physics and Horticulture Research Unit F-49045 Angers France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    stomatal resistance; porometer; container; multiplicative model; water comfort;

    机译:气孔抗性;流量计;容器;乘法模型;水舒适;

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