Studies on Performance of Distributed Vertical Axis Wind Turbine under Building Turbulence

Q4 Engineering
Xin Sun, Chizhi Zhang, Yan Jia, Shikang Sui, Chong Zuo, Xueqiang Liu
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引用次数: 0

Abstract

As a part of the new energy development trend, distributed power generation may fully utilize a variety of decentralized energy sources. Buildings close to the installation location, besides, may have a considerable impact on the wind turbines’ operation. Using a combined vertical axis wind turbine with an S-shaped lift outer blade and (cid:2) -shaped drag inner blade, this paper investigates how a novel type of upstream wall interacts with the incident wind at various speeds, the influence region of the turbulent vortex, and performance variation. The results demonstrate that the building’s turbulence affects the wind’s horizontal and vertical direction, as well as its speed, in downstream places. The wall’s effect on wind speed changing in the downstream area is thoroughly investigated. It turns out that while choosing an installation location, disturbing flow areas or low disturbing flow zones should be avoided to have the least impact on wind turbine performance.
建筑湍流作用下分布式垂直轴风力机性能研究
分布式发电作为新能源发展趋势的一部分,可以充分利用各种分散的能源。此外,靠近安装位置的建筑物可能对风力发电机的运行产生相当大的影响。本文采用s型升力外叶和(cid:2)型阻力内叶的组合式垂直轴风力机,研究了一种新型上游壁面在不同速度下与入射风的相互作用、湍流涡的影响区域以及性能变化。结果表明,建筑物的湍流会影响下游风的水平方向和垂直方向以及风速。深入研究了墙体对下游风速变化的影响。结果表明,在选择安装位置时,应尽量避开扰流区或低扰流区,使其对风力机性能的影响最小。
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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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
122
期刊介绍: Energy Engineering is a bi-monthly publication of the Association of Energy Engineers, Atlanta, GA. The journal invites original manuscripts involving engineering or analytical approaches to energy management.
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