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Variation of Extreme and Fatigue Design Loads on the Main Bearing of a Front Mounted Direct Drive System

机译:前置式直接驱动系统主轴承极限和疲劳设计载荷的变化

摘要

The drivetrain of a 10 MW wind turbine has been designed as a direct drive transmission with a superconducting generator mounted in front of the hub and connected to the main frame through a King-pin stiff assembly by DNV-GL. The aeroelastic design loads of such an arrangement are evaluated based on the thrust and bending moments at the main bearing, both for ultimate design and in fatigue. It is found that the initial superconductor generator weight of 363 tons must be reduced by 25% in order not to result in higher extreme loads on main and yaw bearing than the reference10 MW geared reference drive train. Aweight reduction of 50% is needed in order to maintain main bearing fatigue damage equivalent to the reference drive train. Thus a target mass of front mounted superconducting direct drive generators is found to be between 183-272 tons.
机译:10兆瓦风力涡轮机的传动系统设计为直接驱动变速箱,其中的超导发电机安装在轮毂前方,并通过DNV-GL的King-pin刚性组件连接至主机架。根据最终轴承的设计和疲劳情况,基于主轴承上的推力和弯矩来评估这种布置的气动弹性设计载荷。已发现,超导发电机的初始重量363吨必须减少25%,以免在主轴承和偏航轴承上产生比参考10 MW齿轮传动参考传动系更高的极限载荷。为了使主轴承疲劳损伤保持与参考传动系相当,需要将重量减轻50%。因此,发现前置超导直接驱动发电机的目标质量在183-272吨之间。

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