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Heat and water transport in soils and across the soil-atmosphere interface: 1. Theory and different model concepts

机译:土壤和土壤 - 大气界面的热量和水分运输:1。理论和不同的模型概念

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摘要

Evaporation is an important component of the soil water balance. It is composed of water flow and transport processes in a porous medium that are coupled with heat fluxes and free air flow. This work provides a comprehensive review of model concepts used in different research fields to describe evaporation. Concepts range from nonisothermal two-phase flow, two-component transport in the porous medium that is coupled with one-phase flow, two-component transport in the free air flow to isothermal liquid water flow in the porous medium with upper boundary conditions defined by a potential evaporation flux when available energy and transfer to the free airflow are limiting or by a critical threshold water pressure when soil water availability is limiting. The latter approach corresponds with the classical Richards equation with mixed boundary conditions. We compare the different approaches on a theoretical level by identifying the underlying simplifications that are made for the different compartments of the system: porous medium, free flow and their interface, and by discussing how processes not explicitly considered are parameterized. Simplifications can be grouped into three sets depending on whether lateral variations in vertical fluxes are considered, whether flow and transport in the air phase in the porous medium are considered, and depending on how the interaction at the interface between the free flow and the porous medium is represented. The consequences of the simplifications are illustrated by numerical simulations in an accompanying paper.
机译:蒸发是土壤水分平衡的重要组成部分。它由水在多孔介质中的流动和输送过程组成,这些过程与热通量和自由气流相结合。这项工作提供了对不同研究领域中用来描述蒸发的模型概念的全面综述。概念的范围从非等温两相流,与一相流耦合的多孔介质中的两组分输运,自由空气流中的两组分输送到多孔介质中的等温液态水流,其上限条件为当可用能量和向自由气流的传递受到限制时,可能会产生潜在的蒸发通量;而在土壤水分可用性受到限制时,则可能会受到临界阈值水压的影响。后一种方法与具有混合边界条件的经典Richards方程相对应。我们通过确定针对系统的不同部分(多孔介质,自由流动及其界面)进行的基本简化,并讨论如何对未明确考虑的过程进行参数化,在理论上比较不同的方法。根据是否考虑了垂直通量的横向变化,是否考虑了多孔介质在气相中的流动和迁移以及取决于自由流与多孔介质之间的界面处的相互作用,可将简化分为三组。被代表。随附论文中的数值模拟说明了简化的结果。

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