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Experimental and numerical study of a vertical axis tidal turbine performance

机译:垂直轴潮汐涡轮性能的实验和数值研究

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In the present study, a vertical axis tidal turbine with movable blades was investigated using experimental and numerical methods. A laboratory model of this turbine type nominated as Hunter turbine was manufactured and tested in an established test rig. In the next step, 3D steady Reynolds-Averaged Navier-Stokes (RANS) equations were solved by CFD using k-omega turbulence model to predict turbine's performance. The numerical results were verified by the experimental data. In addition, effects of duct, neighbor turbines distance and layout on the power coefficient were investigated. The results showed that the power coefficient of a turbine in the present of ducts with area ratios of 0.1-0.26 increased from 0.14 to 0.29. It was also observed that in a four turbine farm, the output power is maximum for a distance of 13D (diameter of turbine) between neighbor turbines and area ratio of 0.26. For this case, the farm's performance factor is 0.944.
机译:在本研究中,采用实验和数值方法研究了带有可动叶片的垂直轴潮汐涡轮机。制造了这种类型的实验室模型,被命名为Hunter涡轮机,并在已建立的测试平台上进行了测试。下一步,使用k-ω湍流模型通过CFD求解3D稳态雷诺平均Navier-Stokes(RANS)方程,以预测涡轮机的性能。实验结果验证了数值结果。此外,还研究了管道,相邻涡轮机的距离和布局对功率系数的影响。结果表明,在存在面积比为0.1-0.26的管道中,涡轮机的功率系数从0.14增加到0.29。还观察到在四个涡轮机场中,相邻涡轮机之间的距离为13D(涡轮机直径)且面积比为0.26时,输出功率最大。对于这种情况,服务器场的性能因子为0.944。

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