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Effects of root density distribution models on root water uptake and water flow under irrigation

机译:灌溉条件下根系密度分布模型对根系吸水和水流的影响

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Water uptake by roots greatly influences water distributions in soil-plant systems. It is essential to understand root water uptake patterns to estimate accurately water movement through the systems. In this study, six empirical root density distribution models were incorporated into a water flow model to study their effect on root water uptake and soil water movement. Two main distributions of root systems, i.e., cylindrical and conical shapes, were considered. Root water uptake with these models was evaluated at three levels of irrigation, about 0.3, 0.7 and 1.0 of total potential transpiration, with three root depths in a sandy loam soil and a silt loam soil. High irrigation levels reduced difference of root water uptake from different root depths in both soils. In the sandy loam soil, a shallow root depth could enhance difference in root water uptake among different root distribution models, whereas a greater difference was found within larger root depths in the silt loam soil. The models with the conical shape resulted in an average of 13% higher leaching in the sandy loam soil than were seen with the cylindrical shape. Contributions from different parts of the root system to the total root water uptake were varied with the different models, as were the distributions of water pressure head and water flux in the soil profiles.
机译:根系吸收水分会极大地影响土壤-植物系统中的水分分布。了解根系吸水模式以准确估计水在系统中的运动至关重要。在这项研究中,将六个经验根密度分布模型纳入水流模型,以研究它们对根吸收水和土壤水分运动的影响。考虑了根系的两个主要分布,即圆柱形和圆锥形。在三个灌溉水平下(分别为总潜在蒸腾量的0.3、0.7和1.0),在砂壤土和粉质壤土中以三个根深评估了这些模型的根系吸水量。高灌溉水平减少了两种土壤中不同根深的根系吸水量差异。在沙壤土中,较浅的根深可增强不同根系分布模型之间根系吸水量的差异,而在粉壤土中,较大根深处的根系吸收差异较大。具有圆锥形状的模型导致的沙质壤土中的淋溶平均比圆柱形形状高出13%。根系不同部位对总根系水分吸收的贡献因模型而异,土壤剖面中水压头和水通量的分布也不同。

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