suffering
Rønland
17.2 MW Fully Commissioned Denmark

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Developers/Owners/Operators
RoleOrganisation 
Developer
Harboøre Møllelaug I/S
correct
Developer correct
Developer
Vindenergi Aps
correct
Operator
Vindenergi Aps
Vindenergi ApS and Harboøre Møllelaug I/S operate the 4 x SWT-2.3-93 turbines
correct
Operator
Harboøre Møllelaug I/S
correct
Operator correct
Owner correct
Owner
Harboøre Møllelaug I/S
correct
Owner
Vindenergi Aps
correct
Project Details for Rønland
General Information Name Rønland correct
Other names Roenland correct
Country name Denmark correct
Region Thyborøn-Harboøre correct
Comments correct
Round (or category) correct
Development status Fully Commissioned correct
Comments on the status correct
Power & Turbines Notice any Errors? You can keep this an open resource by submitting corrections!
Project Capacity 17.2 MW correct
Turbine Model SWT-2.3-93 (Siemens), Vestas V80-2.0 MW correct
Turbine Capacity 2.3 MW correct
Number of Turbines 8 correct
Total Turbine Height correct
Hub Height correct
Rotor Diameter 93 m correct
Foundation Grounded: High-Rise Pile Cap (Piled) correct
Windspeed 10 Year Mean Wind Speed (2000-2009) Available online now
Detailed wind speed data 6 hr/day/month historic data
Costs Stated Project Cost correct
Location & Environment Sea name Nissum Bredning correct
Centre latitude 56.662° correct
Centre longitude 8.220° correct
Area 0 km2 correct
Depth range (Chart Datum) 0 m - 2 m correct
Depth range stated by developer correct
Distance From Shore (reported) 0.1 km correct
Distance From Shore (computed from centre) 0.1 km correct
Ports Installation base correct
Ops and maintenance correct
Grid Converter platforms None correct
Offshore transformers None correct
Grid connection point correct
Cable landing point correct
Export Cables
Please note that export cables connect the offshore transformer (substation) to either; shore or an offshore HVAC-HVDC converter station for onward transmission via HVDC cabling. Please see the converters page for planned converter stations and transmission cables.

The export cable length does not generally include the onshore component. The exception is when the onshore substation is close to shore.
Number of Export Cables correct
Average length per cable correct
Transmission type (e.g. HVAC) correct
Nominal voltage correct
Maximum voltage correct
Power rating correct
Number of cores correct
Conductor type correct
Section Area correct
Insulation correct
Number fibre optics correct
Export minimum bend radius (MBR) correct
Burial depth correct
Comments correct
Onshore Cables Number of onshore cables correct
Average length per cable correct
Comments correct
Array Cables Array cable length correct
Estimated cable length LogIn
Transmission type (e.g. MVAC) correct
Nominal voltage correct
Maximum voltage correct
Burial depth correct
Number of cores correct
Conductor type correct
Section correct
Insulation correct
Power rating correct
Number of fibre optics correct
Minimum bend radius (MBR) correct
Comments correct
Benefits Homes powered annually 9617 correct
CO2 reduced per year 19437 tonnes correct
SO2 reduced per year 452 tonnes correct
Expected life correct
Other Website Visit correct