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Estimation of lacustrine groundwater discharge using heat as a tracer and vertical hydraulic gradients - a comparison

机译:利用热量作为示踪剂和垂直水力梯度估算湖相地下水排放量-比较

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Lacustrine groundwater discharge (LGD) can play a major role in water and nutrient balances of lakes. Unfortunately, studies often neglect this input path due to methodological difficulties in the determination. In a previous study we described a method which allows the estimation of LGD and groundwater recharge using hydraulic head data and groundwater net balances based on meteorological data. The aim of this study is to compare these results with discharge rates estimated by inverse modelling of heat transport using temperature profiles measured in lake bed sediments. We were able to show a correlation between the fluxes obtained with the different methods, although the time scales of the methods differ substantially. As a consequence, we conclude that the use of hydraulic head data and meteorologically-based groundwater net balances to estimate LGD is limited to time scales similar to the calibration period.
机译:Lacustrine地下水排放(LGD)可以在湖泊的水和养分平衡中发挥重要作用。不幸的是,由于确定方法上的困难,研究常常忽略了这一输入路径。在先前的研究中,我们描述了一种方法,该方法可以使用水头数据和基于气象数据的地下水净平衡来估算LGD和地下水补给量。这项研究的目的是将这些结果与通过利用在湖床沉积物中测得的温度剖面对热传输进行逆模型估算而得出的排放速率进行比较。尽管这些方法的时间尺度存在显着差异,但我们能够显示使用不同方法获得的通量之间的相关性。因此,我们得出的结论是,使用水头数据和基于气象的地下水净余额来估算LGD仅限于类似于标定周期的时间范围。

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