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CFD investigation of unsteady three-dimensional savonius hydrokinetic turbine in irrigation channel with varying positions for hydro power application

机译:灌区灌溉通道不稳定三维石管水动力学的CFD研究

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Savonius turbines are a drag driven device, and it has high starting torque. It is a vertical axis turbine and installed in small irrigation channels to utilize the hydrokinetic energy available. Since the density of water is more and the flow of water in the channel is constrained to one direction is the advantage for a vertical axis turbine as it reduces the yaw control mechanism. In the present work, a three-dimensional conventional Savonius turbine modeled and meshed in ANSYS Fluent and unsteady transient simulations are carried out using a sliding mesh technique. The computational simulations were carried out at three different positions to analyze the effect of placing a turbine blade in the high depth of water using a conventional Savonius turbine blade with an aspect ratio of 0.7 and 0.0 overlap ratio. The turbulence model used for CFD simulation is the k-ω SST model, and the results found that the maximum coefficient of torque and coefficient of power of 0.22 and 0.17 at a tip speed ratio of 0.7 and 0.9 respectively.
机译:Savonius涡轮机是拖动式设备,它具有高启动扭矩。它是一个垂直的轴涡轮机,并安装在小型灌溉渠道中,以利用可用的水力学能量。由于水的密度越来越多,并且通道中的水流被约束到一个方向上是垂直轴涡轮机的优点,因为它降低了偏航控制机构。在本作工作中,使用滑动网格技术来执行在ANSYS流畅和不稳定的瞬态模拟中建模和网纹的三维传统的Savonius涡轮机。计算模拟在三个不同的位置进行,以分析使用传统的Savonius涡轮机叶片在高深水中放置涡轮机叶片的效果,其纵横比为0.7和0.0重叠率。用于CFD模拟的湍流模型是K-ωSST模型,结果发现,分别以0.7和0.9的尖端速度比为0.22和0.17的最大扭矩和功率系数。

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