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Behavior of water balance components at sites with shallow groundwater tables: Possibilities and limitations of their simulation using different ways to control weighable groundwater lysimeters

机译:地下水位浅的地方水平衡要素的行为:使用不同方法控制可称量的地下水渗滤计的模拟的可能性和局限性

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The water cycle of sites with shallow groundwater tables is characterized by complex interactions of hydrological and ecological processes. The water balance components, which are subject to diurnal fluctuations, are best measured with groundwater lysimeters. However, the lower boundary condition of such lysimeters affects most of the hydrological variables, particularly when considering short time scales, and has to be defined in such a way as to facilitate realistic simulations. In this paper, different means of controlling the lower boundary condition of groundwater lysimeters were compared with respect to their ability to simulate the behavior of the water balance components properly. Measurements of rain-free periods from a lysimeter station installed in the Spreewald wetland in north-east Germany were evaluated. The most common groundwater lysimeter type is controlled using a Mariotte bottle and sets the groundwater level in the soil monolith to a constant level, which here caused an alteration of the inflow to the lysimeter, with respect to both its value and diurnal behavior. Still, daily evapotranspiration values were realistic and this simple and robust approach may be used for time intervals not shorter than one day. High-resolution measurements can be gained from lysimeters that automatically adjust the groundwater level by a system of pumps and valves on an hourly basis. Still, reliable results were only obtained when the conditions in the lysimeter and the surrounding field, where the target groundwater level was measured, were in accordance. Otherwise (e.g., when the groundwater level differed) an unrealistic inflow behavior evolved. Reasonable results, even for slightly diverging conditions, were gained with a new approach that defined the lower boundary conditions by controlling the inflows and outflows of the lysimeter. This approach further enabled the groundwater level itself to be the study subject, thereby enlarging the field of possible applications of groundwater lysimeters. (C) 2015 Elsevier B.V. All rights reserved.
机译:地下水位浅的地方的水循环的特征是水文和生态过程的复杂相互作用。水分水分含量会受到日间波动的影响,最好用地下水溶渗仪测量。但是,这种溶渗仪的下边界条件会影响大多数水文变量,尤其是在考虑短时标的情况下,必须以促进实际模拟的方式进行定义。在本文中,比较了控制地下水渗漏仪下边界条件的不同方法,以及它们正确模拟水平衡组件行为的能力。评估了安装在德国东北部Spreewald湿地中的测雨站的无雨期测量。最常见的地下水渗漏测定仪类型是使用Mariotte瓶控制的,并将整块土壤中的地下水位设置为恒定水平,这会导致渗滤液测定仪的进水量和日均行为发生变化。尽管如此,每天的蒸散量仍然是现实的,这种简单而稳健的方法可以用于不小于一天的时间间隔。溶渗仪可实现高分辨率测量,该渗滤仪由泵和阀门系统按小时自动调整地下水位。但是,只有在测渗仪和周围野外条件(测量目标地下水位)符合条件的情况下,才能获得可靠的结果。否则(例如,当地下水水位不同时)会出现不切实际的流入行为。通过控制溶渗仪的流入和流出来定义下边界条件的新方法,即使对于稍微不同的条件也获得了合理的结果。这种方法进一步使地下水位本身成为研究对象,从而扩大了地下水溶渗仪的可能应用领域。 (C)2015 Elsevier B.V.保留所有权利。

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