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Relations between groundwater flow in an unconfined aquifer and seepage patterns in a closed-basin lake in glacial terrain

机译:冰川地形下密闭盆地地下水流量与渗流方式的关系。

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Groundwater dynamics affect lake water budgets, but its major factors and mechanisms still need clarification. This study evaluates the effects of surrounding groundwater flow on seepage direction and assesses factors that affect seepage flux in a closed-basin lake in northeastern Estonia - Lake Martiska. A piezometric map was used to determine directions of groundwater flow around the lake. Seepage meters were applied for measuring flux at 44 locations along eight transects in the lake in relation to water depth, distance from the shore, sediment type and thickness of organic sediment. Additionally nearshore ice-free areas were mapped in winter. Seepage patterns followed the estimated directions of groundwater flow in nearshore areas. Outseepage records showed the impacts of nearby groundwater-abstraction wells on groundwater flow. However, the within-lake seepage direction and flux differed from the expected at 6-15 m from the shore and water depth of 1-2 m. Seepage flux and physical factors of the lake were uncorrelated. Even with a 3.2 m thick layer of gyttja, seepage influx was 13 ml m~(-2) min~(-1); therefore thick lacustrine sediments do not necessarily prevent inseepage. The, results suggest that a local confined aquifer around and underneath the lake may cause the observed inseepage pattern.
机译:地下水动力学影响着湖泊的水预算,但其主要因素和机理仍需澄清。这项研究评估了周围地下水流量对渗流方向的影响,并评估了影响爱沙尼亚东北部-马蒂斯卡湖的封闭盆地湖泊中渗流通量的因素。测压图用于确定湖周围地下水的流动方向。渗透计用于测量沿湖中八个断面的44个位置的通量,该通量与水深,距海岸的距离,沉积物类型和有机沉积物的厚度有关。此外,冬季还绘制了近岸无冰区的地图。渗流模式遵循了近岸地区地下水流的估计方向。渗流记录显示附近的地下水吸引井对地下水流量的影响。但是,湖内渗流方向和通量与离岸6-15 m和水深1-2 m的预期值不同。湖泊的渗流和物理因素无关。即使有3.2 m厚的gyttja层,渗入量仍为13 ml m〜(-2)min〜(-1)。因此,厚的湖相沉积物不一定能防止渗漏。结果表明,湖泊周围和下方的局部承压含水层可能会导致观测到的渗流模式。

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