首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >INFLUENCE OF SPOKE GEOMETRY ON PERFORMANCE AND INTERNAL FLOW OF CONTRA-ROTATING SMALL-SIZED HYDROTURBINE
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INFLUENCE OF SPOKE GEOMETRY ON PERFORMANCE AND INTERNAL FLOW OF CONTRA-ROTATING SMALL-SIZED HYDROTURBINE

机译:辐条几何对旋转小型水闸性能和内部流动的影响

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Small hydropower generation is one of important alternative energy, and potential of small hydropower is great. Efficiency of small hydroturbines is lower than that of large one, and these small hydroturbine's common problems are out of operation by foreign materials. Then, there are demands for small hydroturbines to keep high performance and wide flow passage. Therefore, we adopted contra-rotating rotors, which can be expected to achieve high performance and enable to use low-solidity rotors with wide flow passage, in order to accomplish high performance and stable operation. Final goal of this study is development of a small hydroturbine like electrical goods, which has high portability and makes an effective use of unused small hydro power energy source. Efficiency of the contra-rotating small hydroturbine was high in pico-hydroturbine and high efficiency could be kept in wide flow rate range. On the other hand, the relatively large loss occurred at the spokes which should be installed for this small hydroturbine to support the rotors. Then, the new spoke to increase its performance is proposed in this research. Internal flow condition, which was difficult to measure experimentally, was shown by the numerical flow analysis. Further, the influence of spoke geometry was clarified. Then, a relation between the performance and internal flow condition was considered by the numerical analysis results. In the present paper, the performance of the contra-rotating small hydroturbine using different spoke geometry is shown by the numerical results. Further, internal flow condition between the front and rear rotors are investigated.
机译:小水电站是重要的替代能源之一,小水电的潜力很大。小型水闸的效率低于大量的效率,并且这些小型水闸血管的常见问题是通过异物失效。然后,需要小型水闸,以保持高性能和宽的流动通道。因此,我们采用了对抗旋转转子,可以预期实现高性能并使能使用具有宽流动通道的低稳定转子,以实现高性能和稳定的操作。本研究的最终目标是开发一股小型水电图,如电器,具有高便携性,并有效地利用未使用的小型水电能源。旋转旋转小型水闸的效率在微微曲线中高,高效率可以保持在宽的流速范围内。另一方面,在辐条上发生的相对较大的损失,该辐条应安装用于该小型水闸以支撑转子。然后,在这项研究中提出了新的谈话以提高其性能。通过数值流动分析显示了实验难以测量的内部流动条件。此外,阐明了辐条几何的影响。然后,通过数值分析结果考虑了性能和内部流动条件之间的关系。在本文中,使用不同辐条几何形状的对比旋转小型水闸的性能由数值结果显示。此外,研究了前转子之间的内部流动状态。

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