Published February 2018 | Version v1
Journal article

Uncertainty of modelled flow regime for flow-ecological assessment in Southern Europe

  • 1. Ludwig-Maximilians-Universitaet Muenchen, Department of Geography, Munich (Germany)
  • 2. European Commission, Joint Research Centre (JRC), Directorate D – Sustainable Resources, Ispra (Italy)
  • 3. UFZ-Helmholtz Centre for Environmental Research, Department Catchment Hydrology, Theodor-Lieser-Str. 4, 06120 Halle (Saale) (Germany)
  • 4. Hellenic Centre for Marine Research, Institute of Marine Biological Resources and Inland Waters, Anavyssos Attica (Greece)
  • 5. University of Innsbruck, Institute of Geography, Innsbruck (Austria)
  • 6. Technical University of Munich, Chair of Hydrology and River Basin Management, Munich (Germany)

Description

Highlights: • We assessed uncertainty in modelling flow regime in four basins with six models. • Except for medium to high flow magnitude, indicator uncertainty was high. • The lack of a reliable reference flow regime hampers flow-ecological assessments. • Use of indicators in ecological assessments should account for their uncertainty. • Simulation of anthropogenic alterations in hydrological models should be improved. Sustainable water basin management requires characterization of flow regime in river networks impacted by anthropogenic pressures. Flow regime in ungauged catchments under current, future, or natural conditions can be assessed with hydrological models. Developing hydrological models is, however, resource demanding such that decision makers might revert to models that have been developed for other purposes and are made available to them ('off-the-shelf' models). In this study, the impact of epistemic uncertainty of flow regime indicators on flow-ecological assessment was assessed at selected stations with drainage areas ranging from about 400 to almost 90,000 km2 in four South European basins (Adige, Ebro, Evrotas and Sava). For each basin, at least two models were employed. Models differed in structure, data input, spatio-temporal resolution, and calibration strategy, reflecting the variety of conditions and purposes for which they were initially developed. The uncertainty of modelled flow regime was assessed by comparing the modelled hydrologic indicators of magnitude, timing, duration, frequency and rate of change to those obtained from observed flow. The results showed that modelled flow magnitude indicators at medium and high flows were generally reliable, whereas indicators for flow timing, duration, and rate of change were affected by large uncertainties, with correlation coefficients mostly below 0.50. These findings mirror uncertainty in flow regime indicators assessed with other methods, including from measured streamflow. The large indicator uncertainty may significantly affect assessment of ecological status in freshwater systems, particularly in ungauged catchments. Finally, flow-ecological assessments proved very sensitive to reference flow regime (i.e., without anthropogenic pressures). Model simulations could not adequately capture flow regime in the reference sites comprised in this study. The lack of reliable reference conditions may seriously hamper flow-ecological assessments. This study shows the pressing need for improving assessment of natural flow regime at pan-European scale.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.scitotenv.2017.09.295

Additional details

Identifiers

DOI
10.1016/j.scitotenv.2017.09.295;
PII
S0048969717326475;

Publishing Information

Journal Title
Science of the Total Environment
Journal Volume
615
Journal Page Range
p. 1028-1047
ISSN
0048-9697
CODEN
STENDL

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
53016845
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
CALIBRATION; DRAINAGE; ECOLOGY; EUROPE; FLOW MODELS; FRESH WATER; HYDROLOGY; INDICATORS; RIVERS; SPATIAL RESOLUTION; TIME RESOLUTION
Descriptors DEC
HYDROGEN COMPOUNDS; MATHEMATICAL MODELS; OXYGEN COMPOUNDS; RESOLUTION; SURFACE WATERS; TIMING PROPERTIES; WATER

Optional Information

Copyright
Copyright (c) 2017 The Authors. Published by Elsevier B.V.