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首页> 外文期刊>Energy Reports >The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20-23 September 2019, Okinawa, Japan Comparative investigations for performance and self-starting characteristics of hybrid and single Darrieus hydrokinetic turbine
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The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20-23 September 2019, Okinawa, Japan Comparative investigations for performance and self-starting characteristics of hybrid and single Darrieus hydrokinetic turbine

机译:2019年9月20日至23日,冲绳,日本的第6届国际权力和能源系统技术会议(CPESE 2019),对杂种和单一Darrieus水动力学的性能和自启动特性进行比较调查

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Hydrokinetic turbine technology is an emerging field to produce clean energy from the riverine systems. Lot of hydrokinetic potential sites are available to provide the energy to the people living in those areas. Under the present work, two different hydrokinetic turbine rotors (hybrid and single Darrieus) are evaluated in term of performance and flow across the rotor. The flow velocity of water is considered as 1.0m/s and the model for both type of rotors are designed and modeled along with an open channel. Based on the investigations, it has been found that hybrid rotor is more efficient for hydrokinetic turbine and yields about 9.9% higher power coefficient ( C P ) than single Darrieus rotor. The average torque coefficient ( C T ) for hybrid rotor has also been found 15.9% higher than single Darrieus rotor with less fluctuations in torque. The results obtained from the numerical investigations are validated with experimentation results. Flow contours across the turbine rotor were plotted and smooth flow was observed with low-pressure range for hybrid rotor while the single Darrieus rotor experience a flow re-circulation zone with high-pressure range.
机译:水力涡轮机技术是一种从河流系统产生清洁能量的新兴领域。可以提供许多水力学潜在地点,以便为生活在这些地区的人们提供能量。在本作工作下,两种不同的水力涡轮机转子(混合动力和单个Darrieus)在转子的性能和流动期间进行评估。水的流速被认为是1.0m / s,并且两种转子的模型都与开放通道一起设计和建模。基于该研究,已经发现,混合转子对水力涡轮机更有效,并且比单个Darrius转子产生约9.9%的功率系数(C P)。混合转子的平均扭矩系数(C T)也发现比单个Darrius转子高15.9%,扭矩波动较少。从数值调查获得的结果通过实验结果验证。绘制涡轮机转子穿过的流量轮廓并在单个Darrius转子的低压范围内观察到平滑的流动,而单个Darrius转子体验具有高压范围的流动再循环区域。

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