Extending one-dimensional models for deep lakes to simulate the impact of submerged macrophytes on water quality

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • Rene Sachse - , Chair of Limnology (Author)
  • Thomas Petzoldt - , Chair of Limnology (Author)
  • Maria Blumstock - , TUD Dresden University of Technology (Author)
  • Santiago Moreira - , Chair of Limnology (Author)
  • Marlene Paetzig - , Brandenburg University of Technology (Author)
  • Jacqueline Ruecker - , Brandenburg University of Technology (Author)
  • Jan H. Janse - , PBL Netherlands Environm Assessment Agcy (Author)
  • Wolf M. Mooij - , Wageningen University & Research (WUR) (Author)
  • Sabine Hilt - (Author)

Abstract

Submerged macrophytes can stabilise clear water conditions in shallow lakes. However, many existing models for deep lakes neglect their impact. Here, we tested the hypothesis that submerged macrophytes can affect the water clarity in deep lakes. A one-dimensional, vertically resolved macrophyte model was developed based on PCLake and coupled to SALMO-1D and GOTM hydrophysics and validated against field data. Validation showed good coherence in dynamic growth patterns and colonisation depths. In our simulations the presence of submerged macrophytes resulted in up to 50% less phytoplankton biomass in the shallowest simulated lake (11 m) and still 15% less phytoplankton was predicted in 100 m deep oligotrophic lakes. Nutrient loading, lake depth, and lake shape had a strong influence on macrophyte effects. Nutrient competition was found to be the strongest biological interaction. Despite a number of limitations, the derived dynamic lake model suggests significant effects of submerged macrophytes on deep lake water quality. (C) 2014 Elsevier Ltd. All rights reserved.

Details

Original languageEnglish
Pages (from-to)410-423
Number of pages14
JournalEnvironmental Modelling and Software
Volume61
Publication statusPublished - Nov 2014
Peer-reviewedYes

External IDs

Scopus 84908310662
WOS 000343852500031
ORCID /0000-0002-4951-6468/work/142256748

Keywords

Keywords

  • Lake model, Macrophytes, Water quality, SHALLOW EUTROPHIC LAKES, PHYTOPLANKTON BIOMASS, NUTRIENT DYNAMICS, PHOSPHORUS, ECOSYSTEM, GROWTH, STATE, FISH, ZOOPLANKTON, VEGETATION