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Restoring the Breeven, ditch by ditch
Master project by Jarne Colman; University of Antwerp, Ecosphere research group
Supervised by Dr. Jan Staes and Jayson Pinza; part of the Turquoise research project
Study site: Breeven
Research methodology
• 2 ditches, 4 depressional wetlands
• For each wetland → 1 ditch in which drainage converges
• Easy to monitor and block off
• Why depressional wetlands? → important for water-retention
• Local seepage very sensitive to drainage
• Hotspots for endangered wetland nature (e.g., fens & wet heath)
• Manipulating the drainage network
• Installment of temporary weirs made from sandbags
• Cheap + easy to install & modify
• Monitoring
• (Ground)water levels → dense network of piezometers
• Benefits of using denser networks? Capturing micro-variations?
• Discharge → Venturi-channel
Targets
1) Protecting/restoring wet nature
2) Restoring local hydrological system
• Increasing water-retention & storage
After this study?
• Permanent measures to stop drainage
• Extent depending on results: from adjustable weirs up to
filling up of entire ditches
• Comparing field-data with modelling scenario’s
• Chance to improve existing models, reducing the need for
expensive field-research
• Improved models could then be used for the rest of the area, or
for other sites
• Moving on to other sites?
• Often difficult due to patchwork of stakeholders and
landowners, each with different aims and dealbreakers
• Mostly owned by Natuurpunt
→ bought with blue deal funding
→ 1 partner = simple communication
• 1 site <=> 1 hydrological system
• Old pine plantation
→ raised groundwater doesn’t affect farmers
External partner:
Research questions
• Focus: effect of blocking drainage channels
on water-retention and groundwater-levels?
• Bonus: effect of weir management (irregular
openings) on effectiveness of weirs as a
water-retaining measure?
SuSanA Secretariat,CC BY 2.0

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Poster_Brussel_Jarne.pdf

  • 1. Restoring the Breeven, ditch by ditch Master project by Jarne Colman; University of Antwerp, Ecosphere research group Supervised by Dr. Jan Staes and Jayson Pinza; part of the Turquoise research project Study site: Breeven Research methodology • 2 ditches, 4 depressional wetlands • For each wetland → 1 ditch in which drainage converges • Easy to monitor and block off • Why depressional wetlands? → important for water-retention • Local seepage very sensitive to drainage • Hotspots for endangered wetland nature (e.g., fens & wet heath) • Manipulating the drainage network • Installment of temporary weirs made from sandbags • Cheap + easy to install & modify • Monitoring • (Ground)water levels → dense network of piezometers • Benefits of using denser networks? Capturing micro-variations? • Discharge → Venturi-channel Targets 1) Protecting/restoring wet nature 2) Restoring local hydrological system • Increasing water-retention & storage After this study? • Permanent measures to stop drainage • Extent depending on results: from adjustable weirs up to filling up of entire ditches • Comparing field-data with modelling scenario’s • Chance to improve existing models, reducing the need for expensive field-research • Improved models could then be used for the rest of the area, or for other sites • Moving on to other sites? • Often difficult due to patchwork of stakeholders and landowners, each with different aims and dealbreakers • Mostly owned by Natuurpunt → bought with blue deal funding → 1 partner = simple communication • 1 site <=> 1 hydrological system • Old pine plantation → raised groundwater doesn’t affect farmers External partner: Research questions • Focus: effect of blocking drainage channels on water-retention and groundwater-levels? • Bonus: effect of weir management (irregular openings) on effectiveness of weirs as a water-retaining measure? SuSanA Secretariat,CC BY 2.0