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首页> 外文期刊>Journal of irrigation and drainage engineering >Soil Moisture Flow Modeling with Water Uptake by Plants (Wheat) under Varying Soil and Moisture Conditions
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Soil Moisture Flow Modeling with Water Uptake by Plants (Wheat) under Varying Soil and Moisture Conditions

机译:不同土壤和水分条件下植物(小麦)吸水的土壤水分流模型

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摘要

A variably saturated soil moisture flow model is developed for planted soils with depth varying properties by incorporating a nonuniform macroscopic root water uptake function. The model includes spatial and temporal variation of the root density with dynamic root growth for simulating water uptake by plants along with the impact of soil moisture availability. The governing partial differential moisture flow equation integrated over the depth with a plant water uptake term is solved numerically by the implicit finite difference method using an iterative scheme. The model is first tested for barren soils for two profiles considering constant and depth varying soil characteristics under constant inflow condition. The results obtained are later tested with experimental data available in the literature. A nonuniform plant water uptake term is subsequently incorporated in the model and water uptake by wheat plants under different soil moisture availability conditions is studied. Finally, the moisture flow model is validated with field data of rain fed wheat (Triticum aestivum) using a dynamic root growth model for a layered root zone soil profile. The simulated soil moisture regime of the layered root zone shows a reasonably good agreement with the observed data.
机译:通过结合非均匀的宏观根系吸水函数,为具有深度变化特性的种植土壤开发了可变饱和土壤水分流模型。该模型包括根密度随时空变化的时空变化,以模拟植物对水分的吸收以及土壤水分有效性的影响。通过使用迭代方案的隐式有限差分方法,数值求解了在整个深度上与植物水分吸收项集成在一起的支配的部分微分水分流方程。考虑到恒定流入条件下恒定和深度变化的土壤特征,首先对贫瘠土壤的两个剖面测试该模型。所得结果随后用文献中提供的实验数据进行测试。随后将非均匀植物水分吸收项纳入模型,并研究了在不同土壤水分可利用条件下小麦植物的水分吸收。最后,利用动态的根系生长模型对层状根区土壤剖面,利用雨养小麦(Triticum aestivum)的田间数据验证了水分流模型。分层根区的模拟土壤水分状况与观测数据显示出相当好的一致性。

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