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Numerical simulation of evapotranspiration using a root water uptake model

机译:根系吸水模型对蒸散量的数值模拟

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The abstraction of ground water by vegetation and its influence on the behaviour of geotechnical structures such as pavements, foundations and slopes has been researched for many years. In recent years, the use of numerical methods in geotechnical engineering has rapidly increased. A major challenge for numerical modelers involves the specification of the surface flow boundary condition to model root water uptake by vegetation. The abstraction of ground water by roots is a complex process which involves the interaction of the atmosphere, vegetation and the ground. Accurate prediction of the pore water pressure changes induced by vegetation requires the development of algorithms which can mimic the process of transpiration by vegetation in the continuity equation of fluid flow. This paper presents a root water uptake model which has been coded into a finite element program that can perform coupled (mechanical and fluid flow behaviour) analyses. The input data includes rainfall, potential evapotranspiration and maximum root depth. The key features of the model are discussed first, followed by a presentation of results from a series of parametric studies.
机译:多年以来,已经研究了植被对地下水的提取及其对人行道,地基和斜坡等岩土结构行为的影响。近年来,数值方法在岩土工程中的使用迅速增加。数值建模人员面临的主要挑战是如何确定地表流边界条件,以模拟植被​​吸收的根水。根源提取地下水是一个复杂的过程,涉及大气,植被和地面的相互作用。对植被引起的孔隙水压力变化的准确预测需要开发一种算法,该算法可以在流体流动的连续性方程中模拟植被的蒸腾过程。本文提出了一种根系吸水模型,该模型已被编码到可以执行耦合(机械和流体流动行为)分析的有限元程序中。输入数据包括降雨,潜在的蒸散量和最大根深。首先讨论该模型的关键特征,然后介绍一系列参数研究的结果。

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