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Joint application of shear wave seismics and direct push methods in the site investigation of an urban aquifer

机译:剪切波地震和直接推动方法在城市含水层现场调查中的联合应用

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摘要

In a highly permeable urban aquifer with a lower cretaceous mudstone aquiclude in the district "Sudstadt" of Hannover/Lower Saxony, a stationary plume of chlorinated hydrocarbons was investigated within a research framework on the use of monitored natural attenuation. In the vicinity of the isolated contaminant source a glacial channel was detected as a possible secondary source supplying the plume. Due to dense housing the channel morphology and possible pathways could not be mapped accurately by classical geological methods. Therefore, the structure of the aquifer was mapped with shear wave seismics on seven profiles covering a range of more than 3.5 km, utilizing a newly developed mobile land streamer unit. The seismic profiles were adjusted with 16 electric conductivity (EC) and penetration logs measured with direct push, delivering a high resolution image of the near surface bedrock. Due to its mobility and the characteristics of shear wave seismics this combination of methods is ideally suitable for work on sealed surfaces.
机译:在汉诺威/下萨克森州的“ Sudstadt”地区,在一个高渗透性的城市含水层中,其下白垩统的泥岩含水层中,在一个使用监测到的自然衰减的研究框架内,对氯化烃的固定羽流进行了研究。在隔离的污染物源附近,冰川通道被检测为可能的辅助羽流来源。由于住房密集,经典的地质方法无法准确地绘制出河道形态和可能的路径。因此,利用新开发的移动陆地拖缆单元,利用剪切波地震将含水层的结构绘制在七个剖面上,覆盖范围超过3.5 km。用16个电导率(EC)调整了地震剖面,并通过直接推动测量了测井曲线,从而提供了近地表基岩的高分辨率图像。由于其流动性和剪切波地震学的特性,这种方法的组合非常适合在密封表面上工作。

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