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首页> 外文期刊>Vadose zone journal VZJ >Effect of Local Soil Hydraulic Conductivity Drop Using a Three-Dimensional Root Water Uptake Model
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Effect of Local Soil Hydraulic Conductivity Drop Using a Three-Dimensional Root Water Uptake Model

机译:三维根系吸水模型对局部土壤导水率下降的影响

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The coupling of soil and root water fluxes at the plant scale is a particularly challenging task. Numerical three-dimensional plant-scale models exist that consider these soil–root interactions. The influence of the hydraulic conductivity drop at themicroscopic scale and especially the effect on root water uptake is not yet assessed in such models. In this study, an analytical approach describing the hydraulic conductivity drop from the bulk soil to the soil–root interface for a three-dimensionalplant-scale model was derived and validated by numerical means. With these tools, quantification of the local hydraulic conductivity drop with time was possible. Furthermore, the effect of the hydraulic conductivity drop on the time occurrence of plant stress was evaluated. Root water uptake was assessed, with and without considering the hydraulic conductivity drop around single roots in a three-dimensional plant-scale model in terms of total water uptake at the root collar under different soil and rootproperties. It was shown that the total root water uptake was strongly affected, especially under conditions where the radial root hydraulic conductivity, which regulates root water uptake, was larger than the soil hydraulic conductivity, which regulates water flow in the soil. These findings were backed up by numerical validation of the model using mesh refinement. Incorporation of the hydraulic conductivity drop around individual roots in a three-dimensional plant-scale model can solve problems withgreater accuracy for larger grid resolutions, and with smaller computational times, than not considering the hydraulic conductivity drop.
机译:在工厂规模上,土壤和根系水通量的耦合是一项特别具有挑战性的任务。存在考虑这些土壤-根际相互作用的数字三维植物规模模型。在这种模型中,尚未评估水力传导率在微观尺度上的下降,特别是对根系吸水率的影响。在这项研究中,得出了一种分析方法,该方法描述了三维工厂规模模型从散装土壤到土-根界面的水力传导率下降,并通过数值方法进行了验证。使用这些工具,可以量化随时间变化的局部水力传导率。此外,评估了水力传导率下降对植物应力发生时间的影响。在不考虑土壤和根系特性的情况下,在三维植物规模模型中,在不考虑单个根周围的水力传导率下降的情况下,对根系吸水率进行了评估。结果表明,特别是在调节根系吸水率的径向根水力传导率大于调节土壤中水流的土壤导水率的条件下,总根系水分吸收受到强烈影响。通过使用网格细化对模型进行数值验证来支持这些发现。与不考虑水力传导率下降相比,在三维工厂规模模型中将水力传导率下降合并到三维工厂规模模型中可以解决以下问题:对于较大的网格分辨率,精度更高,计算时间更短。

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