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Performance and flow field evaluation of a Savonius rotor tested in a wind tunnel

机译:风隧道中测试的萨米乌斯转子的性能和流场评价

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A renewed interest on Vertical Axis Wind Turbines (VAWTs) arose from their great capacity for integration within urban areas and for applications of distributed generation. In order to be able to highly improve their performance, making them competitive with respect to the more consolidated Horizontal Axis Wind Turbines (HAWTs), it is fundamental to have a deeper comprehension of their fluid dynamic behavior. In order to reach this goal, a two-bucket Savonius rotor has been designed, built from a PVC pipe with a nominal diameter of 200 mm, and tested in the wind tunnel of the Department of Mechanics, Mathematics and Managment (DMMM) of the Politecnico di Bari. The Savonius rotor is connected to an AC brushless servo motor, able to control either the braking torque or the rotational speed. This paper describes the experimental evaluation of the unsteady flow field downstream the rotor by means of a Constant Temperature hot wire Anemometer (CTA). Whilst, for performance analysis, the torque measurements have been obtained directly from the Servo Amplifier torque monitor.
机译:对垂直轴风力涡轮机(VAWTS)的重新兴趣从其城市地区内的集成以及分布式发电的应用。为了能够高度提高其性能,使其对更加巩固的水平轴风力涡轮机(HAWTS)的竞争力,这是对流体动力学行为的更深入理解。为了达到这一目标,设计了一款双铲座雄蕊转子,由标称直径为200毫米的PVC管,并在机械部的风洞,数学和管理(DMMM)的风洞中进行测试Politecnico di Bari。 Savonius转子连接到AC无刷伺服电机,能够控制制动扭矩或转速。本文介绍了通过恒温热线风速计(CTA)下游的非定常流场的实验评价。虽然对于性能分析,但是直接从伺服放大器扭矩监测器获得扭矩测量。

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