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Stable water isotope tracing through hydrological models for disentangling runoff generation processes at the hillslope scale

机译:通过水文模型进行稳定的水同位素示踪,以解开坡面径流的产生过程

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Hillslopes are the dominant landscape components where incoming precipitation becomes groundwater, stream-flow or atmospheric water vapor. However, directly observing flux partitioning in the soil is almost impossible. Hydrological hillslope models are therefore being used to investigate the processes involved. Here we report on a modeling experiment using the Catchment Modeling Framework (CMF) where measured stable water isotopes in vertical soil profiles along a tropical mountainous grassland hillslope transect are traced through the model to resolve potential mixing processes. CMF simulates advective transport of stable water isotopes O-18 and 2H based on the Richards equation within a fully distributed 2-D representation of the hillslope. The model successfully replicates the observed temporal pattern of soil water isotope profiles (R-2 0.84 and Nash-Sutcliffe efficiency (NSE) 0.42). Predicted flows are in good agreement with previous studies. We highlight the importance of groundwater recharge and shallow lateral subsurface flow, accounting for 50 and 16% of the total flow leaving the system, respectively. Surface runoff is negligible despite the steep slopes in the Ecuadorian study region.
机译:山坡是主要的景观成分,进入的降水会变成地下水,水流或大气中的水蒸气。但是,直接观察土壤中的通量分配几乎是不可能的。因此,水文山坡模型被用于调查所涉及的过程。在这里,我们报告了使用集水区建模框架(CMF)进行的建模实验,其中通过模型追踪了沿热带山区草原山坡样带垂直土壤剖面中测得的稳定水同位素,以解决潜在的混合过程。 CMF基于山坡的二维分布表示中的Richards方程,模拟了稳定水同位素O-18和2H的对流输运。该模型成功地复制了观测到的土壤水同位素分布的时空模式(R-2为0.84,纳什-苏克利夫效率(NSE)为0.42)。预测流量与以前的研究非常吻合。我们强调了地下水补给和浅层地下地下水流的重要性,分别占离开系统的总水流的50%和16%。尽管厄瓜多尔研究地区的坡度陡峭,但地表径流可以忽略不计。

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