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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Trapped Cylindrical Flow With Multiple Inlets for Savonius Vertical Axis Wind Turbines
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Trapped Cylindrical Flow With Multiple Inlets for Savonius Vertical Axis Wind Turbines

机译:带有多个入口的螺纹圆柱形流动,用于萨米乌斯垂直轴风力涡轮机

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摘要

Savonius vertical axis wind turbines (VAWTs) typically suffer from low efficiency due to detrimental drag production during one half of the rotational cycle. The present study examines a stator assembly created with the objective of trapping cylindrical flow for application in a Savonius VAWT. While stator assemblies have been studied in situ around Savonius rotors in the past, they have never been isolated from the rotor to determine the physics of the flow field, raising the likelihood that a moving rotor could cover up deficiencies attributable to the stator design. The flow field created by a stator assembly, sans rotor, is studied computationally using three-dimensional (3D) numerical simulations in the commercial computational fluid dynamics (CFD) package Star-CCM+. Examination of the velocity and pressure contours at the central stator plane shows that the maximum induced velocity exceeded the freestream velocity by 65%. However, flow is not sufficiently trapped in the stator assembly, with excess leakage occurring between the stator blades due to adverse pressure gradients and momentum loss from induced vorticity. A parametric study was conducted on the effect of the number of stator blades with simulations conducted with 6, 12, and 24 blades. Reducing the blade number resulted in a reduction in the cohesiveness of the internal swirling flow structure and increased the leakage of flow through the stator. Two unique energy loss mechanisms have been identified with both caused by adverse pressure gradients induced by the stator.
机译:SavoNius垂直轴风力涡轮机(VAWTS)通常由于旋转循环的一半而导致的效率低效率。本研究检查了一种定子组件,其目的是捕获圆柱形流动以便在Savonius VAWT中应用。虽然过去已经在Savonius转子周围地原位研究了定子组件,但它们从未从转子中分离以确定流场的物理,提高移动转子可以掩盖归因于定子设计的缺陷的可能性。由定子组件,SAN转子产生的流场在商业计算流体动力学(CFD)封装Star-CCM +中计算使用三维(3D)数值模拟来计算地研究。检查中央定子平面上的速度和压力轮廓表明,最大诱导速度超过了自由流速的65%。然而,流动不充分地捕获在定子组件中,由于来自诱导涡度的不利的压力梯度和动量损失,定子叶片之间发生过多的泄漏。对具有6,12和24叶片进行的模拟的定子叶片的数量进行了参数研究。减少叶片数导致内旋流结构的凝聚力减小,并通过定子增加流量的泄漏。已经通过定子引起的不利压力梯度引起了两个独特的能量损失机制。

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