Released
Software

The River Plume Workflow of the Flood Event Explorer: Detection and impact assessment of a river plume

Cite as:

Rabe, Daniela; Eggert, Daniel; Wichert, Viktoria; Abraham, Nicola (2022): The River Plume Workflow of the Flood Event Explorer: Detection and impact assessment of a river plume. GFZ Data Services. https://doi.org/10.5880/GFZ.1.4.2022.006

Status

I   N       R   E   V   I   E   W : Rabe, Daniela; Eggert, Daniel; Wichert, Viktoria; Abraham, Nicola (2022): The River Plume Workflow of the Flood Event Explorer: Detection and impact assessment of a river plume. GFZ Data Services. https://doi.org/10.5880/GFZ.1.4.2022.006

Abstract

The River Plume Workflow is part of the Flood Event Explorer (FEE, Eggert et al., 2022), developed at the GFZ German Research Centre for Geosciences in close collaboration with Helmholtz-Zentrum Hereon. It is funded by the Initiative and Networking Fund of the Helmholtz Association through the Digital Earth project (https://www.digitalearth-hgf.de/).

The focus of the River Plume Workflow is the impact of riverine flood events on the marine environment. At the end of a flood event chain, an unusual amount of nutrients and pollutants is washed into the North Sea, which can have consequences, such as increased algae blooms. The workflow aims to enable users to detect a river plume in the North Sea and to determine its spatio-temporal extent. Identifying river plume candidates can either happen manually in the visual interface or also through an automatic anomaly detection algorithm, using Gaussian regression. In both cases a combination of observational data, namely FerryBox transects and satellite data, and model data are used. Once a river plume candidate is found, a statistical analysis supplies additional detail on the anomaly and helps to compare the suspected river plume to the surrounding data. Simulated trajectories of particles starting on the FerryBox transect at the time of the original observation and modelled backwards and forwards in time help to verify the origin of the river plume and allow users to follow the anomaly across the North Sea. An interactive map enables users to load additional observational data into the workflow, such as ocean colour satellite maps, and provides them with an overview of the flood impacts and the river plume’s development on its way through the North Sea. In addition, the workflow offers the functionality to assemble satellite-based chlorophyll observations along model trajectories as a time series. They allow scientists to understand processes inside the river plume and to determine the timescales on which these developments happen. For example, chlorophyll degradation rates in the Elbe river plume are currently investigated using these time series.

The workflow's added value lies in the ease with which users can combine observational FerryBox data with relevant model data and other datasets of their choice. Furthermore, the workflow allows users to visually explore the combined data and contains methods to find and highlight anomalies. The workflow’s functionalities also enable users to map the spatio-temporal extent of the river plume and investigate the changes in productivity that occur in the plume. All in all, the River Plume Workflow simplifies the investigation and monitoring of flood events and their impacts in marine environments.

Technical Information

Copyright 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany / DE Flood Event Explorer

Licensed under the Apache License, Version 2.0 (the "License"); you may not use these files except in compliance with the License. You may obtain a copy of the License at

http://www.apache.org/licenses/LICENSE-2.0

Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.

Authors

  • Rabe, Daniela;GFZ German Research Centre for Geosciences, Potsdam, Germany
  • Eggert, Daniel;GFZ German Research Centre for Geosciences, Potsdam, Germany
  • Wichert, Viktoria;Helmholtz-Zentrum hereon, Geesthacht, Germany
  • Abraham, Nicola;Helmholtz-Zentrum hereon, Geesthacht, Germany

Contact

Keywords

Digital Earth, Flood, DASF, Workflow, river plume, ferrybox, impact

GCMD Science Keywords

Files

License: Apache License, Version 2.0; Copyright (C) 2022 Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences