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Understanding uncertainties when inferring mean transit times of water trough tracer-based lumped-parameter models in Andean tropical montane cloud forest catchments

机译:推断安第斯热带山地云雾森林流域中基于水槽示踪剂的集总参数模型的平均通过时间时的不确定性

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摘要

Weekly samples from surface waters, springs, soil water and rainfall were collected in a 76.9 km2 mountain rain forest catchment and its tributaries in southern Ecuador. Time series of the stable water isotopes d18O and d2H were used to calculate mean transit times (MTTs) and the transit time distribution functions (TTDs) solving the convolution method for seven lumped-parameter models. For each model setup, the generalized likelihood uncertainty estimation (GLUE) methodology was applied to find the best predictions, behavioral solutions and parameter identifiability. For the study basin, TTDs based on model types such as the linear–piston flow for soil waters and the exponential–piston flow for surface waters and springs performed better than more versatile equations such as the gamma and the two parallel linear reservoirs. Notwithstanding both approaches yielded a better goodness of fit for most sites, but with considerable larger uncertainty shown by GLUE. Among the tested models, corresponding results were obtained for soil waters with short MTTs (ranging from 2 to 9 weeks). For waters with longer MTTs differences were found, suggesting that for those cases the MTT should be based at least on an intercomparison of several models. Under dominant baseflow conditions long MTTs for stream water = 2 yr were detected, a phenomenon also observed for shallow springs. Short MTTs for water in the top soil layer indicate a rapid exchange of surface waters with deeper soil horizons. Differences in travel times between soils suggest that there is evidence of a land use effect on flow generation.
机译:每周从厄瓜多尔南部一个76.9 km2的山区雨林流域及其支流收集地表水,泉水,土壤水和降雨的每周样本。使用稳定水同位素d18O和d2H的时间序列来计算平均渡越时间(MTT)和渡越时间分布函数(TTD),以解决七个集总参数模型的卷积方法。对于每种模型设置,应用广义似然不确定性估计(GLUE)方法来找到最佳预测,行为解决方案和参数可识别性。对于研究盆地,基于模型类型的TTD(例如,土壤水的线性活塞流量以及地表水和泉水的指数活塞流量)比通用性更强的方程(例如γ和两个平行的线性油藏)表现更好。尽管这两种方法都能为大多数站点带来更好的拟合度,但是GLUE显示出较大的不确定性。在测试的模型中,MTT短(2至9周)的土壤水获得了相应的结果。对于MTT较长的水域,发现存在差异,这表明对于这些情况,MTT至少应基于几种模型的比对。在主要的基流条件下,检测到流水= 2年的长MTT,对于浅泉也观察到了这种现象。表层土层中水的短MTT值表明地表水与较深层土壤的交换迅速。土壤之间传播时间的差异表明,有证据表明土地利用会对流量产生影响。

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