Abstract
AbstractFaults in the Roer Valley Rift System (Netherlands, Belgium, and Germany) act as barriers to lateral groundwater flow in unconsolidated sedimentary aquifers. This causes a cross-fault groundwater-level step of up to several metres. Using a dataset obtained through 5 years of high-frequency monitoring, the effect of fault-zone permeability, precipitation and evapotranspiration on cross-fault groundwater-level steps is studied at two sites situated across the Peel Boundary Fault. Hydraulic conductivity values at the fault are 1–3 orders of magnitude lower than that of similar lithologies away from the fault, indicating that fault displacement has a significant impact on groundwater flow. The influence of precipitation and evapotranspiration on fault-zone hydrology is inferred from water-table fluctuations over short distances across the fault. On the foot wall, the water table is nearer to the surface and displays a shorter level range with a spiky temporal variability. On the hanging wall, a deeper water table is sloping away from the fault and shows a wider level range with a smoother temporal variability. The observed groundwater level fluctuations are attributed mainly to precipitation and evapotranspiration dynamics. At a larger spatial scale, the 5-year-average cross-fault groundwater-level steps at the two sites are 1.59 and 1.39 m. At a smaller scale, the cross-fault groundwater-level step is much less because of the rising water table towards the fault on the hanging wall. At the smallest scale, just across the fault zone, the groundwater level step is around 0.2 m, indicating that the fault is semi-impermeable.
Publisher
Springer Science and Business Media LLC
Subject
Earth and Planetary Sciences (miscellaneous),Water Science and Technology
Reference46 articles.
1. AHN3 (2019) Actueel Hoogtebestand Nederland [Current Dutch elevation]. https://www.ahn.nl/. Accessed 1 March 2021
2. Balsamo F, Storti F (2010) Grain size and permeability evolution of soft-sediment extensional sub-seismic and seismic fault zones in high-porosity sediments from the Crotone basin, southern Apennines, Italy. Mar Pet Geol 27(4):822–837. https://doi.org/10.1016/j.marpetgeo.2009.10.016
3. Bense VF (2002) Hydrogeologische karakterisering van breukzones in Zuidoost-Nederland [Hydrogeological characterization of fault zones in southeast Netherlands]. Stromingen 8(3):17–30
4. Bense VF (2004) The hydraulic properties of faults in unconsolidated sediments and their impact on groundwater flow: a study in the Roer Valley Rift System and adjacent areas in the Lower Rhine Embayment. PhD Thesis, VU University Amsterdam, The Netherlands
5. Bense VF, Kooi H (2004) Temporal and spatial variations of shallow subsurface temperature as a record of lateral variations in groundwater flow. J Geophys Res Solid Earth 109(B4). https://doi.org/10.1029/2003JB002782
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