Evaluating a reservoir parametrization in the vector-based global routing model mizuRoute (v2.0.1) for Earth system model coupling

Human-controlled reservoirs have a large influence on the global water cycle. While global hydrological models use generic parameterizations to model dam operations, the representation of reservoir regulation is still lacking in many Earth system models. Here we implement and evaluate a widely used reservoir parametrization in the global river-routing model mizuRoute, which operates on a vector-based river network resolving individual lakes and reservoirs and is currently being coupled to an Earth system model. We develop an approach to determine the downstream area over which to aggregate irrigation water demand per reservoir. The implementation of managed reservoirs is evaluated by comparing them to simulations ignoring inland waters and simulations with reservoirs represented as natural lakes using (i) local simulations for 26 individual reservoirs driven by observed inflows and (ii) global-domain simulations driven by runoff from the Community Land Model. The local simulations show the clear added value of the reservoir parametrization, especially for simulating storage for large reservoirs with a multi-year storage capacity. In the global-domain application, the implementation of reservoirs shows an improvement in outflow and storage compared to the no-reservoir simulation, but a similar performance is found compared to the natural lake parametrization. The limited impact of reservoirs on skill statistics could be attributed to biases in simulated river discharge, mainly originating from biases in simulated runoff from the Community Land Model. Finally, the comparison of modelled monthly streamflow indices against observations highlights that including dam operations improves the streamflow simulation compared to ignoring lakes and reservoirs. This study overall underlines the need to further develop and test runoff simulations and water management parameterizations in order to improve the representation of anthropogenic interference of the terrestrial water cycle in Earth system models.

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Related Links

Related Dataset #1 : The Global Streamflow Indices and Metadata Archive - Part 1: Station catalog and Catchment boundary

Related Dataset #2 : Hydrologic Derivatives for Modeling and Applications (HDMA) Data

Related Dataset #3 : Reservoir inflow, storage and realease

Related Software #1 : mizuRoute v1.2.1

Related Software #2 : ESCOMP/CTSM: Add SSP3-7.0 extension, and SMYLE 1850 and transient, compsets and use-cases

Related Software #3 : VUB-HYDR/2022_Vanderkelen_etal_GMD: review_round1

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Author Vanderkelen, I.
Gharari, S.
Mizukami, Naoki
Clark, M. P.
Lawrence, David M.
Swenson, Sean
Pokhrel, Y.
Hanasaki, N.
van Griensven, A.
Thiery, W.
Publisher UCAR/NCAR - Library
Publication Date 2022-06-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2025-07-11T16:02:35.759595
Metadata Record Identifier edu.ucar.opensky::articles:25472
Metadata Language eng; USA
Suggested Citation Vanderkelen, I., Gharari, S., Mizukami, Naoki, Clark, M. P., Lawrence, David M., Swenson, Sean, Pokhrel, Y., Hanasaki, N., van Griensven, A., Thiery, W.. (2022). Evaluating a reservoir parametrization in the vector-based global routing model mizuRoute (v2.0.1) for Earth system model coupling. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d79c7240. Accessed 01 August 2025.

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