Numerical simulation of the effect of axial distance between two rotors in counter-rotating wind turbines

Y. H. Irawan, M. A. Bramantya
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引用次数: 11

Abstract

The counter-rotating wind turbines (CRWT) is a wind turbine model developed from a single rotating wind turbine (SRWT) model with a horizontal axis. CRWTs have two rotors rotating in opposite directions on the same axis. The purpose of this research is to find the optimal power that can be produced by CRWTs, as related to the change of the axial distance between the front and rear rotors. The flow around CRWTs is simulated using computational fluid dynamic (CFD) with ANSYS Fluent. The simulation consists of two steps: obtaining the optimum rotation and rotor torque, respectively. These two values are used to calculate the mechanical power of the rotors. In this simulation, the wind velocity is 3 m/s and the variations of axial distance are 0.2d; 0.3d; 0.44d; 0.61d; 0.7d; 0.8d; 1d; 1.5d; 2d (with d standing for front rotor diameter). The result of the simulation shows that axial distance between 0.2d– 0.7d has the most optimal mechanical power.
对转风力机转子间轴向距离影响的数值模拟
反向旋转风力机(CRWT)是在具有水平轴的单旋转风力机(SRWT)模型的基础上发展起来的一种风力机模型。crwt有两个在同一轴上相反方向旋转的转子。本研究的目的是寻找与前后转子轴向距离变化有关的crwt可以产生的最优功率。利用ANSYS Fluent计算流体动力学(CFD)软件对crwt绕流进行了数值模拟。仿真分为两个步骤:分别获得最优转速和转子转矩。这两个值用于计算转子的机械功率。在模拟中,风速为3m /s,轴向距离变化为0.2d;0.3 d;0.44 d;0.61 d;0.7 d;0.8 d;1 d;1.5 d;2d(其中d为前转子直径)。仿真结果表明,轴向距离在0.2d ~ 0.7d之间具有最优的机械功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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