首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >PERFORMANCE CHARACTERISTICS OF VERTICAL-AXIS OFF-SHORE SAVONIUS WIND AND SAVONIUS HYDROKINETIC TURBINES
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PERFORMANCE CHARACTERISTICS OF VERTICAL-AXIS OFF-SHORE SAVONIUS WIND AND SAVONIUS HYDROKINETIC TURBINES

机译:垂直轴离岸救龙头风电和石油利用水管机的性能特点

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The rise in energy demand, climate change and depletion of fossil fuel, encourages the researchers to find a solution to the scarcity of clean energy. Therefore, the extraction of energy from renewable energy sources has become a topic of interest in the past few decades across the globe. Thus, harvesting the off-shore wind and hydro energy and converting it to electrical power using various electromechanical devices has been a challenge. In this context, the vertical-axis Savonius wind and Savonius hydrokinetic turbines appear to be promising concept for energy conversion because of their good self-starting capability and simplicity in design. The present study attempts to characterize the performances of a Savonius wind turbine (SWT) and a Savonius hydrokinetic turbine (SHT) under identical input flow conditions. In order to characterize their performances, the SWT is tested in a low-speed wind tunnel with closed test section whereas the SHT is tested in an open channel flume. In each case, the torque and power coefficients are estimated at different mechanical loading conditions. It is observed that the SWT and SHT demonstrate peak power coefficients of 0.25 and 0.28 respectively for the same input power. However, the SWT is found to operate over a slightly wider range of tip-speed ratios than the SHT before the onset of stall. Finally, the computational study using ANSYS 14.5 has been carried out to evaluate the flow physics of the turbine at various azimuthal positions.
机译:能源需求的增加,气候变化和化石燃料的消耗,鼓励研究人员找到一种解决清洁能源稀缺的解决方案。因此,在全球过去几十年中,可再生能源的能量从可再生能源中提取了一个兴趣的话题。因此,使用各种机电装置收获离岸风和水力发电并将其转换为电力是挑战。在这种情况下,垂直轴Savonius风和Savonius水动力学似乎是能源转换的有希望的概念,因为它们的良好自启动能力和设计简单。本研究试图在相同的输入流动条件下表征Savonius风力涡轮机(SWT)和SAVONIUS水型涡轮机(SHT)的性能。为了表征它们的性能,SWT在具有闭合测试部分的低速风洞中测试,而SHT在开放通道的水槽中进行测试。在每种情况下,扭矩和功率系数在不同的机械负载条件下估计。观察到SWT和SHT分别展示了同一输入功率的0.25和0.28的峰值功率系数。然而,SWT被发现在略微较宽的尖端速度比范围内操作而不是SHT在失速前的SHT。最后,已经进行了使用ANSYS 14.5的计算研究以评估各方位形位置的涡轮机的流量物理学。

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