Case study:Restoration of Kalajoki River: Difference between revisions
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|Picture description=Restoration of | |Picture description=Restoration of Museokoski torrent (photo: Kimmo Aronsuu ) | ||
|Project summary=Since early 1900´s until early 2000´s there has been major river regulation measures done in the Kalajoki River. The river was dredged, straightened and embanked because of flood control, hydro power and log floating which significantly changed hydrological and morphological conditions in the river and affected the river as a habitat of aquatic organisms. | |Project summary=Since early 1900´s until early 2000´s there has been major river regulation measures done in the Kalajoki River. The river was dredged, straightened and embanked because of flood control, hydro power and log floating which significantly changed hydrological and morphological conditions in the river and affected the river as a habitat of aquatic organisms. | ||
Revision as of 10:36, 18 December 2012
This case study is pending approval by a RiverWiki administrator.
Project overview
Status | Complete |
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Project web site | |
Themes | |
Country | Finland |
Main contact forename | Kimmo |
Main contact surname | Aronsuu |
Main contact user ID | User:firstname.lastname@ely-keskus.fi |
Contact organisation | Centre for Economic Development, Transport and the Environment for North Ostrobothnia |
Contact organisation web site | http://www.ely-keskus.fi |
Partner organisations | |
Parent multi-site project | |
This is a parent project encompassing the following projects |
No |
Project summary
Since early 1900´s until early 2000´s there has been major river regulation measures done in the Kalajoki River. The river was dredged, straightened and embanked because of flood control, hydro power and log floating which significantly changed hydrological and morphological conditions in the river and affected the river as a habitat of aquatic organisms.
Since late 1970´s court ordered incorporated studies on effect on regulation measures on water quality, fish stocks and fishing into the rulings. Court also ordered compensational measures like fish stocking and rehabilitation measures which also included observation of the success of these measures. The river was restored to improve breeding conditions for lamprey and crayfish. Plan was to restore rapids total of 55 ha area in the lower reaches of Hamari. The aim was to create more natural conditions for migrating fish and other aquatiq organisms by building bypass channels, adding stones and gravel as and improving bank and bed of the river. The most significant restorations have been stocking of 4.7 million one summer old white fish in 1988-2010, restorations to improve reproduction conditions for creyfish and lamprey and stocking of 30 000 mature creyfish in 2003-2006. There has been also follow-up done to evaluate the effects of the restorations on crayfish, lamprey, fish stocks and the River Kalajoki as a habitat for aquatic organisms.
The government has been major actor in almost all of the water management projects in the River Kalajoki. Restorations were managed by Finnish environmental authority (Centre for Economic Development, Transport and the Environment for North Ostrobothnia). Restorations were done in co-operation with municipalities, local people and non governmental organizations. Estimated costs were about 1 million euros.
Monitoring surveys and results
Lessons learnt
Catchment and subcatchment
Site
Name | Kalajoki River Basin |
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WFD water body codes | |
WFD (national) typology | |
WFD water body name | |
Pre-project morphology | |
Reference morphology | |
Desired post project morphology | |
Heavily modified water body | Yes |
National/international site designation | |
Local/regional site designations | |
Protected species present | No |
Invasive species present | No |
Species of interest | crayfish, lamprey, different fish species |
Dominant hydrology | |
Dominant substrate | |
River corridor land use | Coniferous woodland (semi natural) |
Average bankfull channel width category | |
Average bankfull channel width (m) | |
Average bankfull channel depth category | |
Average bankfull channel depth (m) | |
Mean discharge category | |
Mean annual discharge (m3/s) | |
Average channel gradient category | |
Average channel gradient | |
Average unit stream power (W/m2) |
Project background
Reach length directly affected (m) | |
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Project started | 1994 |
Works started | |
Works completed | |
Project completed | 2004/09/02 |
Total cost category | |
Total cost (k€) | |
Benefit to cost ratio | |
Funding sources |
Cost for project phases
Phase | cost category | cost exact (k€) | Lead organisation | Contact forename | Contact surname |
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Investigation and design | |||||
Stakeholder engagement and communication | |||||
Works and works supervision | |||||
Post-project management and maintenance | |||||
Monitoring |
Reasons for river restoration
Measures
Structural measures
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Bank/bed modifications | |
Floodplain / River corridor | |
Planform / Channel pattern | |
Other | |
Non-structural measures
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Management interventions | |
Social measures (incl. engagement) | |
Other |
Monitoring
Hydromorphological quality elements
Element | When monitored | Type of monitoring | Control site used | Result | ||
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Before measures | After measures | Qualitative | Quantitative |
Biological quality elements
Element | When monitored | Type of monitoring | Control site used | Result | ||
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Before measures | After measures | Qualitative | Quantitative |
Physico-chemical quality elements
Element | When monitored | Type of monitoring | Control site used | Result | ||
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Before measures | After measures | Qualitative | Quantitative |
Any other monitoring, e.g. social, economic
Element | When monitored | Type of monitoring | Control site used | Result | ||
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Before measures | After measures | Qualitative | Quantitative |
Monitoring documents
Image gallery
Additional documents and videos
Additional links and references
Link | Description |
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Supplementary Information
Edit Supplementary Information