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Modelling of the Static Response of a Wind/Hydro Turbine with Two Rotors and a 1DOF Speed Increaser

机译:两个转子的风/水电涡轮机的静电响应建模和1dof速度增加

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The wind/hydro energy conversion systems that integrate speed increasers are known on the market for more than half a century, the classical solutions with one rotor being currently widely implemented worldwide. The issue of increasing their energy performance is still of great interest, many innovative solutions being presented in the literature. A relatively new variant with high performances uses counter-rotating rotors and a speed increaser, being able to supply additional energy due to the use of a secondary rotor and a planetary transmission summing the input motions or torques and, consequently, obtaining higher power compared to a classical system with one input and one output. The solution of speed increaser with two independent inputs requires a complex control to correlate the power generated at the inputs to the generator requirements. A possible solution to avoid this impediment may be the use of a 1DOF planetary speed increaser with two inputs and one output, which sums the input torques and, thus, allows an additional supply of power compared to the classical turbines by using a secondary rotor that is kinematically dependent of the main one. Therefore, the paper is focused on determining the operating point (the parameters of the steady-state regime) for the counter-rotating turbine containing a 1DOF planetary speed increaser with two inputs and one output, considering the mechanical characteristics of the rotors and generator, and the transmission functions of the speed increaser established by taking into account the friction losses. Finally, the obtained analytical model is numerically simulated on a case study.
机译:整合速度更高的风/水电能量转换系统在市场上已知半个以上,该典型解决方案目前在全球范围内广泛实现。提高能源绩效的问题仍然具有很大的兴趣,许多创新解决方案在文献中呈现。具有高性能的相对较新的变型使用反向旋转转子和速度增加,能够通过使用次要转子和行星传输来提供额外的能量,并且行星传输相加与输入运动或扭矩相加,并且因此相比,获得更高的功率具有一个输入和一个输出的古典系统。具有两个独立输入的速度更高的速度求解需要复杂的控制,以将在输入端产生的功率相关联到发电机要求。避免该抵抗的可能解决方案可以是使用具有两个输入的1dof行星速度速度和一个输出,并且通过使用次级转子相比,与经典涡轮机相比,允许额外的功率供应在主视图上依赖于主要。因此,纸张专注于确定具有1dof行星速度的反向旋转涡轮机的操作点(稳态状态的参数),其考虑转子和发电机的机械特性,包括两个输入和一个输出,并且通过考虑到摩擦损失来建立速度的传输功能。最后,在案例研究上进行了数值模拟所获得的分析模型。

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