Jyllinge, Denmark

Torben Juul Larsen


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 23(Granted Patents)


Company Filing History:


Years Active: 2008

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1 patent (USPTO):Explore Patents

Title: Torben Juul Larsen: Innovator in Wind Turbine Technology

Introduction

Torben Juul Larsen is a notable inventor based in Jyllinge, Denmark. He has made significant contributions to the field of wind turbine technology, particularly in optimizing the aerodynamic performance of turbine blades. His innovative approach aims to enhance the efficiency and stability of wind turbines, which are crucial for sustainable energy production.

Latest Patents

Torben Juul Larsen holds a patent for a method of controlling the aerodynamic load of a wind turbine based on local blade flow measurement. This invention focuses on individually controlling the aerodynamic loads on the turbine's blades to reduce dynamic aerodynamic loads and optimize power production. The method improves the overall stability of the turbine, leading to reduced fatigue loads, minimized extreme loads during operation, and a lower risk of blade-tower interaction. By measuring flow properties locally on the blades or in front of them, the pitch angle settings can be adjusted through a control unit, thereby altering the aerodynamic properties of the blades.

Career Highlights

Torben Juul Larsen is associated with Forskningscenter Riso, where he has been instrumental in advancing research and development in wind energy technologies. His work has contributed to the understanding of aerodynamic loads and their impact on turbine performance.

Collaborations

He has collaborated with notable colleagues, including Helge Aagaard Madsen and Kenneth Thomsen, to further enhance the research and application of wind turbine technologies.

Conclusion

Torben Juul Larsen's innovative contributions to wind turbine technology exemplify the importance of research and development in sustainable energy solutions. His patent reflects a significant advancement in optimizing wind turbine performance, which is essential for the future of renewable energy.

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