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Heat and water transport in soils and across the soil-atmosphere interface: 2. Numerical analysis

机译:土壤和土壤 - 大气界面的热量和水分运输:2。数值分析

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摘要

In an accompanying paper, we presented an overview of a wide variety of modeling concepts, varying in complexity, used to describe evaporation from soil. Using theoretical analyses, we explained the simplifications and parameterizations in the different approaches. In this paper, we numerically evaluate the consequences of these simplifications and parameterizations. Two sets of simulations were performed. The first set investigates lateral variations in vertical fluxes, which emerge from both homogeneous and heterogeneous porous media, and their importance to capturing evaporation behavior. When evaporation decreases from parts of the heterogeneous soil surface, lateral flow and transport processes in the free flow and in the porous medium generate feedbacks that enhance evaporation from wet surface areas. In the second set of simulations, we assume that the vertical fluxes do not vary considerably in the simulation domain and represent the system using one-dimensional models which also consider dynamic forcing of the evaporation process, for example, due to diurnal variations in net radiation. Simulated evaporation fluxes subjected to dynamic forcing differed considerably between model concepts depending on how vapor transport in the air phase and the interaction at the interface between the free flow and porous medium were represented or parameterized. However, simulated cumulative evaporation losses from initially wet soil profiles were very similar between model concepts and mainly controlled by the desorptivity, Sevap, of the porous medium, which depends mainly on the liquid flow properties of the porous medium.
机译:在随附的论文中,我们概述了各种建模概念的概述,这些建模概念用于描述从土壤中蒸发的复杂性。使用理论分析,我们解释了不同方法中的简化和参数化。在本文中,我们在数值上评估了这些简化和参数化的结果。进行了两组模拟。第一组研究了均质和非均质多孔介质中产生的垂直通量的横向变化及其对捕获蒸发行为的重要性。当部分非均质土壤表面的蒸发减少时,自由流和多孔介质中的横向流动和运输过程会产生反馈,从而增强从湿表层的蒸发。在第二组模拟中,我们假设垂直通量在模拟域中变化不大,并且使用一维模型表示系统,该模型还考虑了蒸发过程的动态强迫,例如由于净辐射的日变化。在模型概念之间,受到动态强迫的模拟蒸发通量有很大不同,这取决于如何表示或参数化气相中的蒸汽传输以及自由流与多孔介质之间的界面处的相互作用。然而,在模型概念之间,最初的湿润土壤剖面的模拟累积蒸发损失非常相似,并且主要受多孔介质的吸附度Sevap的控制,Sevap主要取决于多孔介质的液体流动特性。

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