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Geoelectrical mapping for improved performance of SUDS in clay tills

机译:地电测绘可改善粘土耕作中SUDS的性能

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摘要

Many cities of the Northern Hemisphere are covered by low permeable clay tills, posing a challenge for stormwater infiltration practices. However, clay tills range amongst the most heterogeneous types of sediments and infiltration rates can vary by several orders of magnitude. This study evaluates if a 2D geoelectrical system can reveal such heterogeneity at field scale and thus be used to optimize the hydraulic performance of stormwater runoff infiltration systems. The assessment is based on a field study where data from non-invasive geoelectrical data are compared with data from invasive geological methods, including borehole soil sample descriptions, one excavation description and a near-surface spear auger-mapping project. The experiments returned a significant correlation of geoelectrical and spear auger-mapped surface sediments. Furthermore, a highly permeable oxidized fracture zone in greater depths could be revealed on the 2D geoelectrical profiles. The successful determination of highly permeable zones harbors potential for improved hydraulic performance of infiltration SUDS (sustainable urban drainage systems).
机译:北半球的许多城市都被低渗透性的粘土覆盖,这对雨水的渗透方式构成了挑战。但是,黏土层是最不均匀的沉积物类型之一,入渗率可以变化几个数量级。这项研究评估了二维地电系统是否可以在现场规模上揭示这种异质性,从而被用于优化雨水径流入渗系统的水力性能。该评估基于一项现场研究,在该研究中,将非侵入性地电数据与侵入性地质方法的数据进行了比较,包括钻孔土壤样品描述,一个开挖描述和近地矛式螺旋钻测绘项目。实验返回了地电和矛式螺旋钻映射的地表沉积物的显着相关性。此外,在2D地电剖面上可以发现更深层的高渗透性氧化断裂带。成功确定高渗透区具有改善渗透SUDS(可持续城市排水系统)水力性能的潜力。

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