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首页> 外文期刊>Quaternary International >Late and postglacial sea-level changes in The Kattegat: The consequences to different coastal aquifers (on the islands Zealand and Anholt)
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Late and postglacial sea-level changes in The Kattegat: The consequences to different coastal aquifers (on the islands Zealand and Anholt)

机译:kattegat的迟到和后海拔海平面变化:对不同沿海含水层的后果(在岛屿西兰和安赫尔特)

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摘要

Fluctuations in sea level influence the condition of coastal groundwater aquifers. In this paper the palaeohydrology of Anholt and part of Zealand and its dependence on the sea level history of Kattegat will be analyzed.The Late and Postglacial Sea-Level Changes in Kattegat are outlined and the consequences analyzed for Late and Postglacial ice movement and for two different coastal aquifers: a simple unconfined aquifer at the island Anholt, and a complex confined Limestone aquifers around Roskilde on Zealand.Data are presented which provide a description of how sea level changes have influenced and formed the island Anholt. This geological history can be used to provide information on the development of the salt-fresh groundwater interface under a sand island. The center of Anholt was covered by the sea at 6 ka and has now an ideal Ghyben-Herzberg freshwater lens. This means that the present equilibrium between the saltwater and freshwater has been established in less than 6000 years.Limestone aquifers on Zealand show no ideal Ghyben-Herzberg freshwater lens. Detailed 3-D mapping of a study area, around Roskilde- and Isefjord, has revealed how low sea-levels (around 50-30 ka) cause development of karst structures and deep erosion channels in the limestone (later filled with high permeable sand and gravel). These channels drain the groundwater to subsea springs, working as natural pumps, resulting in a freshwater "lens" much thinner than the equilibrium.
机译:海平面的波动影响了沿海地下水含水层的状况。在本文中,将分析古兰地区古他族和部分地区的历史,并依赖于Kattegat的海平面历史。概述了Kattegat的晚期和后缘海平面变化,对晚期和后冰冰运动分析的后果和两个不同的沿海含水层:岛岛岛上的一个简单的无舒适的含水层,并在西兰斯罗斯基尔周围的一个复杂的狭窄的石灰岩含水层。提供了一个描述的描述如何发生海平面如何影响和形成岛屿安赫尔特。该地质历史可用于提供有关沙岛下盐新地下水界面的发展的信息。 Anholt的中心被海上覆盖在6 ka,现在拥有理想的Ghyben-Herzberg淡水镜片。这意味着盐水和淡水之间的现有平衡已经在不到6000年的时间内建立了。西兰姆斯酮含水层展示了理想的Ghyben-Herzberg淡水镜片。 Roskilde-and Isefjord的研究区域的详细3-D映射揭示了海平面(大约50-30 ka)的发展原因是石灰石中的喀斯特结构和深侵蚀通道的发展(后来充满了高渗透性沙子碎石)。这些通道将地下水排出到海底弹簧,作为天然泵,导致淡水“镜头”比平衡更薄。

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