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Extraction of soil water by plants: development and validation of a model

机译:植物提取土壤水:模型的开发和验证

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A quantitative model of water movement within the immediate vicinity of an individual root is developed and results of an experiment to validate the model are presented. The model is based on the assumption that the amount of water transpired by a plant in a certain period is replaced by an equal volume entering its root system during the same time. The model is based on the Darcy-Buckingham equation to calculate the soil water matric potential at any distance from a plant root as a function of parameters related to crop, soil and atmospheric conditions. The model output is compared against measurements of soil water depletion by rice roots monitored using γ-beam attenuation in a greenhouse of the Escola Superior de Agricultura "Luiz de Queiroz"/Universidade de S?o Paulo(ESALQ/USP) in Piracicaba, State of S?o Paulo, Brazil, in 1993. The experimental results are in agreement with the output from the model. Model simulations show that a single plant root is able to withdraw water from more than 0.1 m away within a few days. We therefore can assume that root distribution is a less important factor for soil water extraction efficiency.
机译:建立了在单个根附近的水分运动的定量模型,并给出了验证模型的实验结果。该模型基于以下假设:植物在一定时期内所渗出的水量被同时进入其根系的等体积水所代替。该模型基于Darcy-Buckingham方程,根据与作物,土壤和大气条件有关的参数来计算距植物根任何距离的土壤水基质势。将模型输出与在州拉皮卡卡巴的埃斯科拉高级农业大学(Luiz de Queiroz)/圣保罗大学(ESALQ / USP)温室中使用γ束衰减监测的水稻根部测量的土壤水分消耗进行比较于1993年在巴西圣保罗市获得。实验结果与该模型的输出一致。模型仿真表明,单个植物的根部能够在几天之内从超过0.1 m的距离取水。因此,我们可以假设,根系分布对于土壤水分提取效率的影响较小。

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