A WIND TURBINE WITH AN UP-TOWER ELECTROLYSIS SYSTEM AND A METHOD FOR CONTROLLING THE SYSTEM

    公开(公告)号:US20250059658A1

    公开(公告)日:2025-02-20

    申请号:US18723286

    申请日:2022-12-21

    Abstract: A wind turbine comprising a tower, a nacelle mounted rotatably on the tower via a yaw system and a hub carrying at least one wind turbine blade is disclosed. The wind turbine comprises a generator, an AC/DC converter connected to the generator and an electrolysis system connected to a DC power output of the AC/DC converter for producing hydrogen, the electrolysis system being arranged in an up-tower part of the wind turbine. A hydrogen transport line is connected to the electrolysis system for transporting hydrogen produced by the electrolysis system away from the electrolysis system, the hydrogen transport line extending in an interior part of the tower at least partly between the up-tower part of the wind turbine and a lower part of the tower. At least one hydrogen sensor are arranged in the interior part of the tower.

    CONTROL SYSTEM FOR WIND TURBINE HAVING MULTIPLE ROTORS ARRANGED TO CONTROL SUPPORT ARM ORIENTATION

    公开(公告)号:US20180180022A1

    公开(公告)日:2018-06-28

    申请号:US15550330

    申请日:2016-02-12

    Abstract: The invention is directed to a wind turbine system comprising a first pair of wind turbines mounted to a support structure by a first support arm arrangement, and a second pair of wind turbines mounted to the support structure by a second support arm arrangement. The first and second support arm arrangements are mounted to the support structure at a respective yaw unit so as to yaw about the major axis of the support structure. Moreover, the wind turbine system further includes a control system that is configured to control the yaw angle of each of the first and second support arm arrangements, wherein the control system is configured to identify the presence of a predetermined shutdown condition and, in response, the control system is operable to control the yaw angles of the first support arm arrangement and the second support arm arrangement to a predetermined safe state.

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