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Comparison of different types of electromechanical systems for creating the counter-rotating VAWT

机译:比较用于创建反向旋转VAWT的不同类型的机电系统

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The article presents a comparison by computer simulation the work of dual-rotor vertical axis wind turbine (VAWT) with three types of mechanical transmissions: rigid with the bevel gearbox, semi-rigid with the differential, and soft gearless with the double rotor synchronous generator with permanent magnets. The results of the study have shown the advantages and disadvantages of dual-rotor VAWTs with these transmissions on their start and operation in real conditions that can be characterized by different values WTs moments of inertia and wind gusts at different speeds acting on each of wind turbines (WT). The existence of the backlashes between the gears in rigid and semi-rigid mechanical transmissions causes significant ripples of elastic torques, which are larger in transmission with differential than in gear transmission. This drawback is absent in gearless transmission, making it the most promising to the application in small counter-rotation VAWTs.
机译:本文通过计算机仿真比较了具有三种类型的机械变速器的双转子垂直轴风力涡轮机(VAWT)的工作:锥齿轮箱为刚性,差速器为半刚性,双转子同步发电机为无齿轮的软齿轮带有永久磁铁。研究结果表明,双转子VAWT在真实条件下的启动和运行中具有这些变速器的优缺点,其特征在于不同值的WTs惯性矩和阵风以不同的速度作用在每台风力涡轮机上(WT)。刚性和半刚性机械传动装置中齿轮之间的齿隙的存在会引起很大的弹性转矩波动,在带差速器的传动装置中,该弹性转矩的波动大于在齿轮传动装置中的波动。无齿轮变速器中没有这种缺点,这使其成为小型反向旋转VAWT应用中最有前途的。

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