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A thermodynamic formulation of root water uptake

机译:根系吸水的热力学公式

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摘要

By extracting bound water from the soil and lifting it to the canopy, root systems of vegetation perform work. Here we describe how root water uptake can be evaluated thermodynamically and demonstrate that this evaluation provides additional insights into the factors that impede root water uptake. We derive an expression that relates the energy export at the base of the root system to a sum of terms that reflect all fluxes and storage changes along the flow path in thermodynamic terms. We illustrate this thermodynamic formulation using an idealized setup of scenarios with a simple model. In these scenarios, we demonstrate why heterogeneity in soil water distribution and rooting properties affect the impediment of water flow even though the mean soil water content and rooting properties are the same across the scenarios. The effects of heterogeneity can clearly be identified in the thermodynamics of the system in terms of differences in dissipative losses and hydraulic energy, resulting in an earlier start of water limitation in the drying cycle. We conclude that this thermodynamic evaluation of root water uptake conveniently provides insights into the impediments of different processes along the entire flow path, which goes beyond resistances and also accounts for the role of heterogeneity in soil water distribution.
机译:通过从土壤中提取束缚水并将其提升到树冠上,植被的根系便开始发挥作用。在这里,我们描述了如何通过热力学评估根系吸水量,并证明了这种评估方法可以进一步了解阻碍根系吸水的因素。我们导出了一个表达式,该表达式将根系统基础处的能量输出与项的总和相关联,这些项以热力学术语反映沿流路的所有通量和存储变化。我们使用具有简单模型的理想场景设置说明了这种热力学公式。在这些情况下,我们证明了为什么土壤平均水含量和生根特性相同的情况下,土壤水分分布和生根特性的异质性会影响水流的障碍。根据系统的热力学,可以根据耗散损失和水力能的差异清楚地识别出异质性的影响,从而在干燥循环中尽早开始水的限制。我们得出的结论是,这种对根系水分吸收的热力学评估可以方便地洞悉整个流动路径中不同过程的障碍,这些障碍超越了阻力,也说明了土壤分布中非均质性的作用。

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