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Novel evaporation experiment to determine soil hydraulic properties

机译:确定土壤水力特性的新型蒸发实验

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摘要

A novel experimental approach to determine soil hydraulic material properties for the dry and very dry range is presented. Evaporation from the surface of a soil column is controlled by a constant flux of preconditioned air and the resulting vapour flux is measured by infrared absorption spectroscopy. The data are inverted under the assumptions that (i) the simultaneous movement of water in the liquid and vapour is represented by Richards' equation with an effective hydraulic conductivity and that (ii) the coupling between the soil and the well-mixed atmosphere can be modelled by a boundary layer with a constant transfer resistance. The optimised model fits the data exceptionally well. Remaining deviations during the initial phase of an experiment are thought to be well-understood and are attributed to the onset of the heat flow through the column which compensates the latent heat of evaporation.
机译:提出了一种新颖的实验方法来确定土壤水硬性材料在干燥和非常干燥范围内的特性。从土壤柱表面蒸发是通过恒定的预处理空气流量控制的,所产生的蒸汽流量通过红外吸收光谱法进行测量。在以下条件下将数据取反:(i)具有有效水力传导率的Richards方程表示水在液体和蒸气中的同时运动,并且(ii)可以将土壤与充分混合的大气之间的耦合控制为由具有恒定传输阻力的边界层建模。优化的模型非常适合数据。在实验的初始阶段剩余的偏差被认为是很好理解的,并且归因于流过色谱柱的热流的开始,该热流补偿了蒸发的潜热。

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