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On the Balance Equations and Error Estimators for Separating n Time Components of Runoff With One Stable Isotope Tracer

机译:用一个稳定的同位素示踪剂分离径流n个时间分量的平衡方程和误差估计

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摘要

Starting from their first applications in the late 1960s, the mass balance equations for separating storm hydrographs have been analyzed with respect to their solvability and sensitivity to errors. By changing them into a time perspective, it is shown how an iterative extension of the standard two-component separation can lead to a system of balance equations that allows for separating n time components using one single stable isotope tracer. This new approach is tested for the case n=6 by using the experimental data of the Zastler catchment (18.4 km(2), southern Black Forest, Germany). The behavior of several time components is demonstrated. By separating the event water of the last and next-to-last event, it is shown how the event water of a certain rainfall-runoff event contributes to stream discharge over the next two subsequent events. The new separation model offers the possibility of tracing event water over a much longer period after the initial event.
机译:从1960年代后期的首次应用开始,就分离风暴水位图的质量平衡方程式的可解性和对误差的敏感性进行了分析。通过将它们更改为时间透视图,可以看到标准两组分分离的迭代扩展如何导致平衡方程系统,该平衡方程系统允许使用一个稳定的同位素示踪剂分离n个时间组分。通过使用Zastler流域(18.4 km(2),德国黑森林南部)的实验数据,针对n = 6的情况测试了这种新方法。演示了几个时间分量的行为。通过将最后一个事件和倒数第二个事件的事件水分开,可以显示某个降雨径流事件的事件水如何在接下来的两个后续事件中促进河流排放。新的分离模型提供了在初始事件之后很长一段时间内跟踪事件水的可能性。

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