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  4. Effectiveness of Controlled Tile Drainage in Reducing Outflow and Nitrogen at the Scale of the Drainage System
 
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Effectiveness of Controlled Tile Drainage in Reducing Outflow and Nitrogen at the Scale of the Drainage System

Type
Journal article
Language
English
Date issued
2023
Author
Kęsicka, Barbara 
Kozłowski, Michał 
Stasik, Rafał 
Faculty
Wydział Inżynierii Środowiska i Inżynierii Mechanicznej
Journal
Water (Switzerland)
ISSN
2073-4441
DOI
10.3390/w15101814
Web address
https://www.mdpi.com/2073-4441/15/10/1814
Volume
15
Number
10
Pages from-to
art. 1814
Abstract (EN)
The impact of controlled drainage (CD) on the groundwater table (GWT), drainage outflow, surface runoff, and nitrogen reduction at the drainage system scale in the Wielkopolska region was analyzed in this study. Based on field research, mainly by monitoring of GWT changes in 2019–2020, the DRAINMOD model was calibrated and validated. Hydrological soil water balance simulations were carried out with 36 and 9 combinations for CD and free drainage (FD), respectively. The modelling period was March-September for 10 different dry, wet, and normal years from the period of 1961 to 2020. The next step was to use the results of drainage outflow modelling and chemical constituent analyses of drainage water samples to determine NO3-N concentrations and calculate NO3-N pollution loads. As a result of the simulations, the importance of the timing of the start of the outflow retention in the adopted model variants was determined, indicating the earliest assumed date of 1 March. The appropriate CD start date as well as the initial GWT has a significant impact on the effectiveness of CD application in reducing the volume of drainage outflow and reducing the amount of NO3-N entering open water with it. The application of CD under the conditions of the analyzed drainage facility makes it possible to retain up to 22 kg of NO3-N per hectare.
Keywords (EN)
  • DRAINMOD model

  • subsurface drainage

  • groundwater table

  • drainage water management

  • nutrients

License
cc-bycc-by CC-BY - Attribution
Open access date
May 10, 2023
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