Numerical simulation of interaction between two Savonius turbines aimed at practical application of ocean current power generation

A. Minakawa, T. Kawamura
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Abstract

. One of the vertical axis wind turbines that utilize drag force is the Savonius wind turbine. Savonius wind turbines are characterized by low speed rotation and high torque, so they are rarely used for wind power generation but have possibility to apply to ocean current power generation, which has been attracting attention recently. In this report, we actually performed a numerical simulation of the flow using suitable grid, focusing mainly on the case where two wind turbines are rotating in reverse at a constant speed, and investigated the state of the flow field. Two-dimensional incompressible Navier-Stokes equations are adopted as the basic equation and solved numerically using the finite difference method. In addition, in order to enable calculation even in a high Reynolds number flow, the nonlinear term of the equations are approximated by using the third-order accuracy upstream difference method. The simulation is performed under the condition that the flow corresponds to three types of angles of 90 degrees, 45 degrees, and 0 degrees with respect to the line connecting the centers of the two wind turbines. The flow field differs greatly depending on each angle, and the interaction between the two wind turbines has been clarified.
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面向海流发电实际应用的两台Savonius水轮机相互作用的数值模拟
。利用阻力的垂直轴风力涡轮机之一是Savonius风力涡轮机。Savonius风力发电机具有低速旋转和大扭矩的特点,因此很少用于风力发电,但有可能应用于海流发电,近年来备受关注。在本报告中,我们实际使用合适的网格进行了流动的数值模拟,主要针对两台风力涡轮机以恒定速度反向旋转的情况,研究了流场的状态。采用二维不可压缩Navier-Stokes方程作为基本方程,采用有限差分法进行数值求解。此外,为了在高雷诺数流场中也能进行计算,采用三阶精度上游差分法对方程的非线性项进行了近似。在气流相对于两台风机中心连接线对应90度、45度和0度三种角度的情况下进行仿真。不同角度的流场差异很大,阐明了两个风力机之间的相互作用。
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