Modelling the effects of surface water flood pulses on groundwater
Publication date
2010-02-01
Authors
Schot, P.P.
Wassen, M.J.
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DOI
Document Type
Abstract
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Abstract
Flood pulses in wetlands steer ecosystem development directly through surface water processes and
indirectly through the effects of the flood pulse on groundwater. Direct effects on ecosystems are exerted by
e.g. inundation and deposition of sediments containing nutrients. Indirect effects include the rise of
groundwater levels and accompanying soil moisture contents following the flood pulse, and the transport of
solutes and nutrients from the flood waters to the root zone of wetland vegetation by groundwater flow. The
dynamic interaction between surface water and groundwater are steered by their relative water levels.
Surface water levels may invoke recharge of the adjacent groundwater systems during the high stages of the
flood pulse, while they may invoke drainage at later stages when surface water levels are lowered. The
resulting dynamic groundwater levels and solute concentrations influence terrestrial vegetation development
and zonation in wetlands. To obtain insight in the effects on wetland ecosystems of human interventions like
climate change, water management and land use change, instruments are needed to (quantitatively) simulate
the processes involved. The groundwater model Hydrus-2D has been successfully applied to simulate the
effects of human interventions on the transport of water and solutes in both the unsaturated and saturated
zone towards the root zone of wetland vegetation in The Netherlands. This paper will present preliminary
results of the application of Hydrus-2D to simulate the effect of the flood pulse in the Okavango delta on the
transport of water and solutes in the adjacent groundwater, based on data taken from literature.
Keywords
flood pulses, wetlands, ecosystems