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Threshold behavior of karst aquifers: the example of the Lurbach karst system (Austria)

机译:岩溶含水层的阈值行为:以Lurbach岩溶系统为例(奥地利)

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摘要

Threshold behavior in hydrological systems generally involves a qualitative change of a single process, the system response or the functioning of the system. Different types of thresholds and their underlying controls are examined using the example of the Lurbach karst system (Austria). This karst system receives allogenic recharge from the sinking stream Lurbach, which under low-flow conditions only resurges at the Hammerbach spring. Yet, under medium- to high-flow conditions an overflow toward another spring, the Schmelzbach outlet occurs. Thresholds in physicochemical spring responses and their underlying controls are identified from the analysis of heat and solute transport processes in karst conduits. Applying this concept to the Hammerbach spring suggests that the threshold controlling the response of the spring water temperature was changed in the time period from 2006 to 2009 relative to the years before. At the same time, changes are observed in the behavior of the spring hydrograph and the discharge threshold at which the overflow to the Schmelzbach system is activated. All of these observations can be consistently explained by a decreased diameter of the conduit pathways within the indicated time period, presumably caused by the redistribution of sediments due to a flood event in 2005. Thus, thresholds in the physicochemical spring response were successfully employed to support the identification of a change in the functioning of the Lurbach karst system, which occurred possibly because a threshold related to the sediment transport within the karst conduits was crossed.
机译:水文系统的阈值行为通常涉及单个过程的质变,系统响应或系统功能。使用Lurbach岩溶系统(奥地利)的示例检查了不同类型的阈值及其基本控制。该岩溶系统从下沉流Lurbach接收异体补给,Lurbach在低流量条件下仅在Hammerbach春季回潮。但是,在中流量到高流量条件下,另一个梅尔的溢流发生在Schmelzbach出口。通过分析岩溶导管中的热量和溶质运移过程,可以确定理化弹簧响应的阈值及其潜在控制。将这一概念应用到Hammerbach泉水,表明控制泉水温度响应的阈值在2006年至2009年期间相对于前几年发生了变化。同时,观察到了春季水文图的行为和排放阈值的变化,在该阈值处激活了Schmelzbach系统的溢流。所有这些观察结果都可以用所示时间段内导管路径直径的减小来解释,这大概是由于2005年的洪水事件造成了沉积物的重新分布所致。因此,理化弹簧响应的阈值已成功用于支持确定了Lurbach岩溶系统功能的变化,这可能是由于超过了与岩溶导管内的沉积物输送有关的阈值而发生的。

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