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首页> 外文期刊>Energies >Turbulent Flow Characteristics and Dynamics Response of a Vertical-Axis Spiral Rotor
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Turbulent Flow Characteristics and Dynamics Response of a Vertical-Axis Spiral Rotor

机译:垂直轴螺旋转子的湍流特性和动力学响应

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The concept of a vertical-axis spiral wind rotor is proposed and implemented in the interest of adapting it to air flows from all directions and improving the rotor’s performance. A comparative study is performed between the proposed rotor and conventional Savonius rotor. Turbulent flow features near the rotor blades are simulated with Spalart-Allmaras turbulence model. The torque coefficient of the proposed rotor is satisfactory in terms of its magnitude and variation through the rotational cycle. Along the height of the rotor, distinct spatial turbulent flow patterns vary with the upstream air velocity. Subsequent experiments involving a disk generator gives an in-depth understanding of the dynamic response of the proposed rotor under different operation conditions. The optimal tip-speed ratio of the spiral rotor is 0.4–0.5, as is shown in both simulation and experiment. Under normal and relative-motion flow conditions, and within the range of upstream air velocity from 1 to 12 m/s, the output voltage of the generator was monitored and statistically analyzed. It was found that normal air velocity fluctuations lead to a non-synchronous correspondence between upstream air velocity and output voltage. In contrast, the spiral rotor’s performance when operating from the back of a moving truck was significantly different to its performance under the natural conditions.
机译:提出并实施了垂直轴螺旋风轮机的概念,目的是使其适应来自各个方向的气流并提高转子的性能。在建议的转子和传统的Savonius转子之间进行了比较研究。用Spalart-Allmaras湍流模型模拟了转子叶片附近的湍流特征。所提出的转子的转矩系数就其大小和整个旋转周期的变化而言是令人满意的。沿着转子的高度,不同的空间湍流模式随上游空气速度而变化。随后的涉及盘式发电机的实验对所提出的转子在不同运行条件下的动态响应进行了深入的了解。仿真和实验均显示,螺旋转子的最佳叶尖速比为0.4-0.5。在正常和相对运动的流动条件下,并且在上游空气速度为1至12 m / s的范围内,对发电机的输出电压进行监视和统计分析。发现正常的空气速度波动导致上游空气速度与输出电压之间的非同步对应。相反,在动车后部操作时,螺旋转子的性能与自然条件下的性能明显不同。

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