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Transit time distributions and StorAge Selection functions in a sloping soil lysimeter with time-varying flow paths: Direct observation of internal and external transport variability

机译:具有时变流动路径的倾斜土壤渗漏仪中的运输时间分布和StorAge Selection功能:直接观察内部和外部运输的可变性

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摘要

Transit times through hydrologic systems vary in time, but the nature of that variability is not well understood. Transit times variability was investigated in a 1 m(3) sloping lysimeter, representing a simplified model of a hillslope receiving periodic rainfall events for 28 days. Tracer tests were conducted using an experimental protocol that allows time-variable transit time distributions (TTDs) to be calculated from data. Observed TTDs varied with the storage state of the system, and the history of inflows and outflows. We propose that the observed time variability of the TTDs can be decomposed into two parts: internal variability associated with changes in the arrangement of, and partitioning between, flow pathways; and external variability driven by fluctuations in the flow rate along all flow pathways. These concepts can be defined quantitatively in terms of rank StorAge Selection (rSAS) functions, which is a theory describing lumped transport dynamics. Internal variability is associated with temporal variability in the rSAS function, while external is not. The rSAS function variability was characterized by an inverse storage effect, whereby younger water is released in greater proportion under wetter conditions than drier. We hypothesize that this effect is caused by the rapid mobilization of water in the unsaturated zone by the rising water table. Common approximations used to model transport dynamics that neglect internal variability were unable to reproduce the observed breakthrough curves accurately. This suggests that internal variability can play an important role in hydrologic transport dynamics, with implications for field data interpretation and modeling.
机译:通过水文系统的运输时间会随时间变化,但是这种可变性的性质尚不清楚。在1 m(3)的倾斜溶渗仪中研究了运输时间的变化,它代表了接收28天周期性降雨事件的山坡的简化模型。使用实验协议进行示踪剂测试,该协议允许根据数据计算随时间变化的渡越时间分布(TTD)。观察到的TTD随系统的存储状态以及流入和流出的历史记录而变化。我们建议将观测到的TTD的时间可变性分解为两部分:与流动路径的布置和分配之间的变化相关的内部可变性;沿所有流路的流速波动驱动外部变化。这些概念可以根据等级StorAge选择(rSAS)函数进行定量定义,这是一种描述集总运输动力学的理论。内部可变性与rSAS功能的时间可变性相关,而外部不相关。 rSAS功能可变性的特征是具有反向存储效应,即较湿的条件下较干燥的条件下,较年轻的水以更大的比例释放。我们假设这种影响是由于地下水位上升导致非饱和区水的快速流动引起的。忽略内部可变性而用于建模运输动力学的常用近似方法无法准确地再现观察到的突破曲线。这表明内部可变性在水文传输动力学中可以发挥重要作用,对现场数据解释和建模具有重要意义。

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