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Experimental and Computational Study of a Micro Vertical Axis Wind Turbine

机译:微垂直轴风力涡轮机的实验和计算研究

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With recent surge in fossil fuel prices and demand for cleaner renewable energy sources, wind turbines have become an alternative technology for power generation. Greenhouse gases such as carbon dioxide (CO2) emitted into the atmosphere contribute to the global climate change. This paper investigates the design of a Savonius type vertical axis wind turbine and its potential to generate power. To enhance the performance of the turbine, a flow restricting cowl is incorporated into the turbine. The airflow behavior of the turbine was investigated both experimentally and computationally. Three different configurations were studied (open position, centred position and a closed position). It is found that a partially cowled turbine in a centred and closed position resulted in a better performance of the turbine than a fully cowled turbine with the same configuration.
机译:随着最近化石燃料价格的激增,对清洁剂可再生能源的需求,风力涡轮机已成为发电的替代技术。诸如二氧化碳(CO2)的温室气体排放到大气中有助于全球气候变化。本文调查了Savonius型垂直轴风风力涡轮机的设计及其产生功率的潜力。为了增强涡轮机的性能,将流量限制在涡轮机中。实验和计算上研究了涡轮机的气流行为。研究了三种不同的配置(打开位置,居中位置和关闭位置)。发现处于居中和关闭位置的局部调节涡轮机导致涡轮机的性能比具有相同配置的完全穿越涡轮机更好。

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