The goal of the project is to develop a barge to jack-up vessel loading technology, which can operate in wavw height of 2.5 m, and that will increase the operation window significantly.
WindCal2.0 will develop and demonstrate a nacelle-mounted lidar calibration method where highly accurate lidars replace cup anemometers as the calibration reference and robots automate and speed up
The project develops a drone inspection solution and digital documentation that recognize and categorize surface errors and measure parts of industrial structures with high precision.
The objective is to ensure future large-scale nacelle test facilities are technical and economically feasible for the wind industry. This will be done by further developing and demonstrating R&D Test
The project partners aim to develop and demonstrate a subsea robot, ACOMAR - Auto COmpact MArine growth Remover, which increases atomization of the marine growth removal process on offshore structures
The project purpose is to deliver easily accessible metocean siting data for design and planning anywhere offshore. Through a scalable quality/cost structure ranging from free general data analytics
The project objectives of GOTWind is the optimization of bolt technology for wind turbines from production until end-of-life. Overall, this project will ensure that there are set out general rules in
The costs of the management of seabed wind farm interaction is high, around one third of the total costs of the foundation of offshore wind farms. The aim of the project is to reduce these costs by
The Megavind Partnership´s vision is to maintain and develop Danish position as wind energy hub and home to the world´s leading companies and research institutes. Megavind´s objective is to identify
Interruptions of installation/uninstallation of wind turbine blades due to high wind speed are a huge cost for the wind industry, especially offshore. The objective of this project is to be able to do
A unique and dedicated software tool for small and medium size wind turbines - Online WAsP - is proposed to ensure inexpensive but accurate calculations of energy yields, noise impacts and financial
The objective of this project is to establish a novel type of wind load simulator where the true nature of wind can be simulated. The wind load simulator is central part of a new generation of test
The purpose is to develop and demonstrate a solution, an integrated Crane Basket, solving the challenge to get technicians access to blades on installed turbines – on- as offshore, for safe and
Task27 will focus on the research needs for understanding small wind turbines and their performance in environments of high turbulence including the built-environment. The subtasks are: Continue the
The purpose of ODIN-WIND is to develop and demonstrate a management tool for the decommissioning of offshore wind turbines. The tool will enable stakeholders to reduce the risk, cost and time spent on
To develop and demonstrate cost effective solutions for mitigating leading edge damages on blades on both existing and future wind turbines, based on Bladena’s patented technologies for mitigating
The IEA Wind Task 33 is dealing with databases for optimizing reliability and maintenance procedures for wind turbines. The aim is to address the different developments of data collection and failure
To contribute to development of new cold climate technology and stimulate new applications for Danish wind technology through IEA Task 19 through forming the basis for new international standards in