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Effect of Capped Vents on Torque Distribution of a Semicircular-Bladed Savonius Wind Rotor

机译:顶盖排气口对萨沃纽斯半圆风轮转子转矩分布的影响

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摘要

To address the problem of the imminent energy crisis, pollution from fossil fuels, and global warming, it is necessary to incorporate renewable technologies. In that context, the drag based Savonius wind turbine has tremendous potential to extract wind energy and can be operated as a standalone system at remote areas where the conventional electricity cannot be provided. The present study primarily focuses on the performance evaluation of a conventional semicircular-bladed Savonius rotor with capped vents (CVs) or nozzle chamfered vents. The rotor blades having vent ratios of 7%, 14%, and 21% are tested in a wind tunnel, and subsequently, their performances are compared with a rotor without CVs under identical test conditions. Computational fluid dynamics (CFD) simulations have also been carried out to compliment the surprising experimental results and also to analyze the flow physics around the rotor blades. From the understanding of torque distribution, it has been noticed that the performance of the rotor with CV deteriorates compared with the conventional semicircular-bladed rotor. The vents are found to decrease the positive torque and increase the negative torque by disturbing the pressure distribution of the conventional semicircular-bladed Savonius rotor.
机译:为了解决迫在眉睫的能源危机,化石燃料污染和全球变暖的问题,有必要纳入可再生技术。在这种情况下,基于阻力的Savonius风力涡轮机具有提取风能的巨大潜力,并且可以在无法提供常规电力的偏远地区作为独立系统运行。本研究主要集中在常规的带盖孔(CV)或喷嘴斜面孔的半圆叶片Savonius转子的性能评估上。在风洞中测试具有7%,14%和21%的通风比的转子叶片,随后,在相同的测试条件下,将它们的性能与不带CV的转子进行比较。还进行了计算流体动力学(CFD)模拟,以补充令人惊讶的实验结果,并分析转子叶片周围的流动物理学。从转矩分布的理解,已经注意到,与常规的半圆叶片转子相比,具有CV的转子的性能下降。发现通气孔会通过扰乱传统的半圆叶Savonius转子的压力分布来减小正转矩并增加负转矩。

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