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CFD analysis of number of blades on the performance of counter rotating wind turbine designed using blade element momentum theory under transient condition

机译:瞬态条件下叶片元素动量理论设计叶片旋转风力涡轮机数量的CFD分析

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摘要

Unsteady CFD simulations on the effects of number of blades on counter rotating wind turbine (CRWT) were carried out in order to investigate the performance and the flow characteristics. In this paper, 2-bladed and 3-bladed CRWT were designed using Blade Element Momentum Theory (BEMT) which comprised of S833, S834, and S835 airfoils. As a comparison baseline, a SRWT model which have similar design with front rotor of the 3-bladed CRWT would be also investigated. It was found that the SRWT had the same rotational speed with the front rotor of the 3-bladed CRWT. There was about 10.24 % and 11.79 % rotational speed reduction of the rear rotor from the front rotor of 2-bladed CRWTs and 3-bladed CRWTs, respectively. Both of 2-bladed CRWT and 3-bladed CRWT have higher total power than SRWT, thereby generating more larger velocity deficits in the wake flow.
机译:进行了对叶片数量在计数器旋转风力涡轮机(CLWT)上的影响的不稳定CFD模拟,以研究性能和流动特性。在本文中,使用由S833,S834和S835翼型组成的叶片元件动量理论(BEMT)设计了2°叶片和3-叶片CRWT。作为比较基线,还研究了具有3-叶片CRWT的前转子类似设计的SRWT模型。发现SRWT具有与3-叶片CRWT的前转子相同的转速。从2-叶片嵴的前转子和3-叶片CrWTS的后转子的旋转减速约为10.24%和11.79%。两个叶片Crwt和3叶CLWT两者的总功率高于SRWT,从而在唤醒流中产生更大的速度缺陷。

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