HR: 0800h
AN: H31G-0742 [Abstracts]
TI: Simulation of Nutrient Transport in Streams During High Flows
AU: * Riml, J
EM: riml@kth.se
AF: Department of Land and Water Resources Engineering,
Division of Hydraulic Engineering,
The Royal Institute of Technology, Teknikringen 76, Stockholm, 100 44, Sweden
AU: Worman, A
EM: worman@kth.se
AF: Department of Land and Water Resources Engineering,
Division of Hydraulic Engineering,
The Royal Institute of Technology, Teknikringen 76, Stockholm, 100 44, Sweden
AU: Arheimer, B
EM: Berit.Arheimer@smhi.se
AF: Swedish Meteorological and Hydrological Institute, SMHI
Folkborgsvägen 1, Norrköping, 601 76, Sweden
AB:
The occurrence of high flows in watersheds requires models that link solute transport processes with hydraulics
of flooded stream cross sections. For instance, nutrient export occurs predominantly during high flows. Important
mechanisms include the retention caused by exchange with flood plains, stagnant water in the stream channel
and retention in the hyporheic zone.
The investigation uses a 1-dimensional network model and parameterizes the result in a form appropriate for
nutrient in a compartment model that has been developed for Swedish conditions during decades. The
compartment model is a (kinetic) mass-balance model that accounts for a large set of processes, while the
stream network model uses the 1-dimensional advection-dispersion equation with transient storage and lateral
inflow. The distribution of stream segment within the network is described through the width function, which
reflects the frequency distribution of flow distances within the network. The ability to describe these processes in
a physically based manner has provided a tool to improve predictability of the nutrient status of watershed and the
possibility to trace and explain the problems behind e.g. eutrophication.
DE: 1821 Floods
DE: 1847 Modeling
DE: 1860 Streamflow
DE: 1871 Surface water quality
DE: 1879 Watershed
SC: Hydrology [H]
MN: 2007 Fall Meeting