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COMPARATIVE ASSESSMENT OF SAVONIUS WATER TURBINE WITH CONVENTIONAL SAVONIUS WIND TURBINE

机译:萨沃尼水轮机与常规萨沃尼风轮机的比较评估

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Wind turbine has gained a keen interest in the field of research but its low efficiency due to low working fluid density triggers the need for upgradation. However, this technology will get a boost if the factor of low density fluid is eradicated. This paper is intended towards the study of performance of the same design of Savonius wind turbine when operated in high density water. The density of water is approximately 1000 times more than air. In the present study, the performance of a two bladed Savonius wind turbine and a Savonius water turbine have been analyzed both experimentally and with the aid of Computational Fluid Dynamics (CFD) using Ansys 19.0, keeping the maximum power content (Pmax) of the fluid-stream constant. Coefficient of power (Cp) is one of the deciding factors for superiority of the turbines one over the other. For the study, three cases of power contents viz. 0.61 W, 6.2 W and 16.45 W have been considered. The results obtained suggest that the Savonius water turbine with the highest Cp value of 0.343 is dominant over Savonius wind turbine. The effects of tip speed ratio and Non-dimensional factor (γ) on performance of both the turbine kinds have also been studied. Savonius Turbine, Computational Fluid Dynamics (CFD), Tip Speed Ratio (757?)
机译:风力涡轮机已经在研究领域引起了浓厚的兴趣,但是由于工作流体密度低而使其效率低下,因此需要进行升级。但是,如果消除了低密度流体的因素,该技术将得到提升。本文旨在研究相同设计的Savonius风力发电机在高密度水中运行时的性能。水的密度大约是空气的1000倍。在本研究中,已经通过实验并借助使用Ansys 19.0的计算流体动力学(CFD)来分析两叶片Savonius风力发电机和Savonius水轮发电机的性能,并保持流体的最大功率(Pmax)流常数。功率系数(Cp)是使涡轮机彼此领先的决定因素之一。为了研究,三个案例的权力内容即。已经考虑了0.61 W,6.2 W和16.45W。获得的结果表明,最高Cp值为0.343的Savonius水轮机比Savonius风力机占主导地位。还研究了叶尖速比和无量纲因数(γ)对这两种涡轮机性能的影响。 Savonius涡轮机,计算流体力学(CFD),叶尖速比(757?)

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