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A Rainfall Interception Model for Alfalfa Canopy under Simulated Sprinkler Irrigation

机译:模拟喷灌条件下苜蓿冠层降雨截留模型

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Estimating canopy interception of water by plants during rainfall or sprinkler irrigation is a critical step for evaluating water-use efficiency. Most existing experimental studies and mathematic models of canopy interception have paid little attention to the interception losses of water by herbaceous plants. To better understand the canopy interception processes of herbaceous plants and to estimate the interception losses, a process-based dynamic interception model for alfalfa canopy was developed and validated by an experiment under conditions of simulated sprinkler irrigation. The parameters of the model included the maximum interception, the rate of interception of the alfalfa canopy, and the duration of sprinkler irrigation. The model demonstrated that the amount of interception increased rapidly with duration in the early stage of sprinkler irrigation, and then gradually leveled off until the maximum retention capacity of the canopy was reached. The maximum interception by the alfalfa canopy, ranging from 0.29 to 1.26 mm, increased nonlinearly with the increase of leaf area index ( LAI ) and sprinkling intensity. The rate of interception increased with the decrease of LAI and the increase of sprinkling intensities. Meanwhile, a nonlinear equation based on sprinkling intensity and plant height was proposed in order to more practically estimate the maximum interception by alfalfa canopy.
机译:估算降雨或洒水灌溉期间植物对水的冠层截留是评估用水效率的关键步骤。现有的大多数实验研究和冠层截留的数学模型都很少关注草本植物对水的截留损失。为了更好地了解草本植物的冠层截留过程并估算其截留损失,开发了基于过程的苜蓿冠层动态截留模型,并通过模拟喷灌条件下的实验进行了验证。该模型的参数包括最大截留率,苜蓿冠层的截留率以及喷灌的持续时间。该模型表明,在喷灌的初期,截留量随持续时间的增加而迅速增加,然后逐渐趋于平稳,直到达到冠层的最大保留能力。苜蓿冠层的最大截获范围为0.29至1.26 mm,随叶面积指数(LAI)和喷洒强度的增加而非线性增加。随着LAI的降低和喷洒强度的增加,拦截率也随之增加。同时,提出了基于喷洒强度和株高的非线性方程,以更实际地估算苜蓿冠层的最大截留率。

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