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Interlobate esker architecture and related hydrogeological features derived from a combination of high-resolution reflection seismics and refraction tomography, Virttaankangas, southwest Finland

机译:高分辨率西南地震和折射层析成像相结合的叶状埃斯克结构和相关水文地质特征,芬兰西南部的维塔坎坎加斯

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摘要

A novel high-resolution (2-4 m source and receiver spacing) reflection and refraction seismic survey was carried out for aquifer characterization and to confirm the existing depositional model of the interlobate esker of Virttaankangas, which is part of the Sakylanharju-Virttaankangas glaciofluvial esker-chain complex in southwest Finland. The interlobate esker complex hosting the managed aquifer recharge (MAR) plant is the source of the entire water supply for the city of Turku and its surrounding municipalities. An accurate delineation of the aquifer is therefore critical for long-term MAR planning and sustainable use of the esker resources. Moreover, an additional target was to resolve the poorly known stratigraphy of the 70-100-m-thick glacial deposits overlying a zone of fractured bedrock. Bedrock surface as well as fracture zones were confirmed through combined reflection seismic and refraction tomography results and further validated against existing borehole information. The high-resolution seismic data proved successful in accurately delineating the esker cores and revealing complex stratigraphy from fan lobes to kettle holes, providing valuable information for potential new pumping wells. This study illustrates the potential of geophysical methods for fast and cost-effective esker studies, in particular the digital-based landstreamer and its combination with geophone-based wireless recorders, where the cover sediments are reasonably thick.
机译:进行了新的高分辨率(2-4 m源和接收器间距)反射和折射地震勘测,以表征含水层并确认Virttaankangas的叶状埃斯克沉积物模型,该沉积物是Sakylanharju-Virttaankangas冰川河水埃斯克的一部分芬兰西南部的碳链工厂。托管有管理的含水层补给(MAR)厂的叶状esker建筑群是图尔库市及其周围市政当局全部供水的水源。因此,准确地描述含水层对于长期的MAR规划和esker资源的可持续利用至关重要。此外,另一个目标是解决覆盖破裂的基岩区域的70-100米厚的冰川沉积物的地层。通过组合反射地震和折射层析成像的结果来确认基岩表面和裂缝区域,并根据现有的井眼信息进一步进行验证。高分辨率地震数据证明可以成功准确地描绘出埃斯克岩心,并揭示了从扇形叶瓣到壶孔的复杂地层,为潜在的新抽油井提供了有价值的信息。这项研究说明了地球物理方法在快速,经济高效的潜艇研究中的潜力,特别是基于数字的陆地拖缆及其与基于地震检波器的无线记录仪的结合,其中覆盖物沉积物相当厚。

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