Onshore turbines
Geared and direct-drive turbines serve different wind classes and regional markets.
View sourceWind turbines, lifecycle service and technician training
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Geared and direct-drive turbines serve different wind classes and regional markets.
View sourceDirect-drive offshore platforms cover current development and contracted installation programmes.
View sourceBlade, tower and control options adapt supported turbines to site and lifecycle requirements.
View sourceFlexible service agreements and field support maintain onshore and offshore fleets.
View sourceMonitoring, diagnostics and remote support connect operating turbines with specialist teams.
View sourcePlatform-specific controls and aerodynamic upgrades improve production within site limits.
View sourceSCADA, condition monitoring and integrity tools support wind-farm operation.
View sourceComponent repair, exchange and spare-part supply support turbine maintenance.
View sourceControl and detection upgrades support operation in icing and high-wind conditions.
View sourceDanish training programmes cover turbine operation, safety, lifting and blade repair.
View sourceTune below-rated operation on G52 and G58 turbines.
Develop practical wind-turbine maintenance skills.
Develop blade repair and inspection competence.
Train users and technicians on turbine lifting equipment.
Increase rated output on eligible D3 direct-drive turbines.
Optimize power-curve control on eligible legacy fleets.
Activate offshore boosting over a wider operating range.
Uprate eligible Gamesa 2 MW and 2.1 MW turbines.
Support turbine and plant-control grid requirements.
Reduce abrupt shutdowns during high winds.
Replace major turbine components in the field.
Repair and recondition turbine drivetrain and structural components.
Repair electrical, electronic, mechanical and hydraulic assemblies.
Plan vessels, crews and maintenance campaigns offshore.
Adapt turbine controls for cold-weather operation.
Support owners managing their own maintenance.
Enable additional output within component and site limits.
Upgrade blade aerodynamics and turbine controls.
Troubleshoot turbine faults with remote specialists.
Monitor alarms and operating status remotely.
Detect blade icing on supported Senvion turbines.
Manage turbine operation through stronger winds.
Practise wind-turbine safety and rescue techniques.
Configure operating networks and turbine interfaces.
Source new and refurbished wind-turbine spare parts.
Inspect turbine components to identify developing damage.
Optimize control strategies on Senvion turbines.
Assess and extend the operating life of eligible turbines.
Train technicians on platform-specific operation and fault diagnosis.
Manage turbine software versions and updates.
Detect component deterioration through turbine vibration monitoring.
Analyse blade-inspection imagery for integrity management.
Coordinate yaw control to reduce offshore wake losses.
Forecast conditions and production for wind, solar and hybrid assets.
Protect turbine and wind-farm digital systems.
Replace or repower aging wind-generation assets.
Replace legacy SCADA with configurable wind-farm control.
Introduce service customers to their turbine technology and support options.
Maintain onshore and offshore turbines under an agreed service scope.
The first RecyclableBlade turbine began generating at Kaskasi in July 2022. The project, rated 327 MW nominal and up to 342 MW with boost, uses 38 SG 8.0-167 DD turbines. Blade technology was developed in Aalborg; project blades and nacelles came from Hull and Cuxhaven.
Supplied 21 project-rated 8.4 MW turbines for the 176 MW Danish offshore wind farm, inaugurated in September 2024. The combined Nord/Syd order included three years of service from Hvide Sande.
Supplied 20 project-rated 8.4 MW turbines for the 168 MW Danish offshore wind farm, inaugurated in September 2024. Manufacturing included Brande, with the combined project service arrangement based in Hvide Sande.
By July 2026, 36 of 72 turbines had been installed from Esbjerg for the 1.1 GW project. The scope includes 36 GreenerTowers and 120 recyclable blades. Full commissioning was planned for spring 2027.
Delivered the SG 14-222 platform for the 882 MW Moray West project. Installation experience improved load control and the offshore assembly workflow.
Installed RecyclableBlades at the Sofia offshore wind project in the UK as part of scaling the blade technology.
Announced collaboration in September 2021 to deploy recyclable blades in a future offshore wind project.
Announced joint work in September 2021 toward deployment of recyclable blades in a future offshore wind project.
Installed the Power Curve Upgrade at Horns Rev II, combining aerodynamic changes with turbine control optimization.
Manufactured the first six 81 m RecyclableBlades in Aalborg before the September 2021 launch.
Installed and tested the SG 14-222 prototype at Østerild, including validation of Electrical Horizontal Single Blade Mounting.
Installed eleven 450 kW turbines at Vindeby in 1991. The pioneering offshore installation was decommissioned in 2017.
Detected a developing high-speed gearbox pinion defect for an unnamed wind-turbine owner, providing 27 days of lead time relative to conventional condition monitoring. Early warning enabled spare-part ordering and repair before complete gearbox failure, avoiding EUR 300,000 in this case.
An Operation with Ice example in Scandinavia recorded more than 200 MWh of additional production after the upgrade.
The 2018 track record documents control upgrades on 850 kW and 2 MW turbines across multiple regions.
Opened a wind-turbine remote diagnostics centre in Brande in 2014, connecting turbine data with specialist monitoring and fault analysis.
In December 2021, turbine delivery was underway for 140 SG 11.0-200 DD units at the 1.5 GW Hollandse Kust Zuid offshore wind farm.
Received a 2013 order for 448 turbines with 1,050 MW combined capacity from MidAmerican Energy.
Confirmed a 2018 order from Ørsted for 165 SG 8.0-167 DD turbines for the Hornsea Project.
ISO 9001:2015
TÜV Rheinland certificate 01 100 115165, valid 11 June 2025 to 13 July 2027, includes the Danish operator's listed sites. Brande scope covers turbine development, testing, nacelle/generator/hub manufacture and service; Aalborg covers blade development, testing and manufacture; Vejle covers design and project execution. Other Danish annex sites have specific logistics, assembly, tooling or R&D scope.
ISO 14001:2015
TÜV Rheinland certificate 01 104 115165, valid 11 June 2025 to 13 July 2027, includes the Danish operator's listed sites. Brande scope covers turbine development, testing, nacelle/generator/hub manufacture and service; Aalborg covers blade development, testing and manufacture; Vejle covers design and project execution. Other Danish annex sites have specific logistics, assembly, tooling or R&D scope.
ISO 45001:2018
TÜV Rheinland certificate 01 213 115165, valid 18 June 2025 to 15 July 2027, includes the Danish operator's listed sites. Brande scope covers turbine development, testing, nacelle/generator/hub manufacture and service; Aalborg covers blade development, testing and manufacture; Vejle covers design and project execution. Other Danish annex sites have specific logistics, assembly, tooling or R&D scope.
Extended Power Boost DNV-GL certification
DNV-GL certification for Extended Power Boost on G4, D6, D7 and D8 offshore platforms, explicitly stated in the 2023 upgrade brochure; no certificate number or validity period specified.
Rotor Blade Ice Detection automatic-restart certification
The Rotor Blade Ice Detection system is certified for automatic restarts on supported Senvion MM (excluding MM70) and 3.XM turbines. Issuer and validity are unspecified; local-authority approval remains necessary.
Vattenfall Kriegers Flak
Listed Vattenfall collaboration reference for the 600 MW Kriegers Flak offshore wind farm, identified as operational in December 2021.
Vattenfall DanTysk
Listed Vattenfall collaboration reference for the 288 MW DanTysk offshore wind farm, identified as operational in December 2021.
Vattenfall Sandbank
Listed Vattenfall collaboration reference for the 288 MW Sandbank offshore wind farm, identified as operational in December 2021.
Vattenfall Lillgrund
Listed Vattenfall collaboration reference for the 110 MW Lillgrund offshore wind farm, identified as operational in December 2021.
Siemens Gamesa Renewable Energy A/S designs, manufactures and supports wind turbines from its Danish operations. Brande combines development, testing, nacelle assembly and service management. Aalborg develops and manufactures blades, Vejle supports engineering and project execution, and Esbjerg supports offshore assembly and shipping. The commercially connected group portfolio covers geared and direct-drive onshore turbines, offshore turbines, maintenance, component repair, digital monitoring and performance upgrades. Availability varies by market and turbine platform. The Brande training centre offers technical, safety, lifting and blade-repair courses to external customers. Foreign factories and repair partners form part of the delivery network.
Aerodynamic blade attachments
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Updated Sep 13, 2026