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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >New geological aspects for freshwater seepage and formation in Eckernforde Bay, western Baltic
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New geological aspects for freshwater seepage and formation in Eckernforde Bay, western Baltic

机译:波罗的海西部埃克恩福德湾淡水渗流和形成的新地质方面

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The subsurface geology relevant to the submarine freshwater seepage in Eckernforde Bay has been investigated using shallow seismic instruments and vibrocoring. Detailed surveying revealed that the pockmarks are aligned like pearls on a string or densely clustered in furrow-like structures depending on the glacial and postglacial setting of the underlying strata. Two possible aquifers have been verified: The older Miocene sand aquifer is partly scaled by a till unit forming the central part of the Mittelgrund. The younger aquifer consists of a mixture of glacial till and meltwater sediments partly scaled by till and partly by lateglacial galciolacustrine silt and clay sediments. The investigations imply that connections exist between the aquifers and that groundwater leakage takes place in the marginal zones of the bay due to thinning and coarsening of the sediment composition of the lateglacial seal. Within the seepage areas, the pockmarks are restricted to areas covered by unconsolidated Holocene mud of low thickness' that are easy to penetrate by artesian groundwater. Macrofossil studies and AMS C-14 dating of the lateglacial and Holocene units reveal that the Mittelgrund shoal of glacial origin has been modified by coastal processes and formation of cuspate foreland deposits during the subsequent palaeo-lake phases of 15-20m below the present sea level (b.s.l.). The lake phases correlate in time with the regional Baltic Ice Lake highstand about 10,000 C-14 years BP and the Ancylus Lake highstand about 9200 14C years BP. This means that local contemporary takes existed or the western margin of the regional lakes can be moved considerably further west than expected hitherto. In the earliest phase of the Littorina Sea transgression, the Mittelgrund shoal was exposed to coastal erosion once more before the final drowning and the initiation of mud sedimentation in the surrounding basins took place. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 32]
机译:使用浅层地震仪器和振动记录仪对与埃克恩福德湾海底淡水渗透有关的地下地质情况进行了调查。详细的调查显示,麻点的排列方式像珍珠在弦上一样,或者紧密地聚集在沟状结构中,具体取决于下伏地层的冰川和冰川后环境。已验证了两种可能的含水层:较新世的中新世含水层被形成Mittelgrund中心部分的耕作单元部分缩放。较年轻的含水层由冰川耕层和融水沉积物的混合物组成,部分由耕层缩放,部分由晚冰川的湖相湖泊淤泥和粘土沉积物缩放。调查表明,在含水层之间存在联系,由于晚冰川封层的沉积物成分变薄和变粗,在海湾的边缘区域发生了地下水泄漏。在渗流区域内,麻点仅限于由未固结的全新世低厚度泥浆覆盖的区域,这些泥浆易于被自流地下水渗透。大型化石研究和晚冰统和全新世单元的AMS C-14测年表明,在随后海平面以下15-20m的古湖相阶段中,沿海过程和尖顶前陆沉积物的形成改变了米特尔格伦德冰川起源(bsl)。湖泊阶段在时间上与大约10,000 C-14年BP的波罗的海冰湖高点和大约9200 14C BP的Ancylus湖高点在时间上相关。这意味着存在当地的当代艺术,或者区域湖泊的西边缘可以比迄今为止的预期向西移动得多。在Littorina海侵的最早阶段,Mittelgrund浅滩在最终淹没和周围盆地开始淤泥沉积之前,再次受到海岸侵蚀。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:32]

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