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Wind Energy Harnessing System for Low and High Wind Speeds

机译:高低风速风能利用系统

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This work presents the design and analysis of a novel wind energy harnessing system that makes use of wind defecting structures to increase the ambient wind speed at geographic locations with relatively low wind speed. The system however reacts to highspeed wind conditions by altering the profile of the wind defecting structure in order to eliminate wind speed amplification attribute of the system, thereby protecting the wind turbine assembly at high speed wind conditions. Although increasing the wind speed is advantageous at geographic locations that the wind speed is typically low; however, from times to time, there could be sustained high-speed wind conditions at the same locations that may damage the wind turbine systems that take advantage of the wind defecting structures. The present work disclosed a wind deflecting structure formed by at least two sail-like partial cylindrical structures that are supported atop of a tower-like foundation in a symmetric arrangement, where one or more wind turbines can be installed in the space between the two partial cylinders. The two partial cylinders, each substantially in form a quarter cylinder is made of plurality of parallel ribbed-like bars, hereafter referred to as "bars" with a flexible thin material that are mechanically supported by the bars. The bars are oriented in a direction perpendicular to the ground; allowing the wing deflecting structures to accept horizonal axis or vertical axis turbines in the space between them. The function of the bars is to allow the thin material, attached to them, to assume a curved configuration substantially in the form of a quarter cylinder. The apparatus is equipped with wind speed monitoring devices, and power source and power transmission means, such as cable-pulleys, chain-sprockets, gears, or mechanical linkages that all work in concert to deploy or stow the thin material along the vertical rods depending to the magnitude of the prevailing wind speed. Preliminary computational fluid dynamics analyses have shown that the wind deflecting structure proposed here in amplifies the wind speed by a factor of 1.65.
机译:这项工作提出了一种新型风能利用系统的设计和分析,该系统利用风缺陷结构来提高风速相对较低的地理位置的环境风速。然而,该系统通过改变风缺陷结构的轮廓来对高速风条件作出反应,以便消除系统的风速放大属性,从而在高速风条件下保护风力涡轮机组件。尽管提高风速在地理位置上是有利的,但是风速通常较低;但是,风速通常较低。然而,有时在相同的位置可能会出现持续的高速风况,这可能会损坏利用风缺陷结构的风力涡轮机系统。本发明公开了一种由至少两个帆状的部分圆柱形结构形成的导风结构,所述帆状的部分圆柱形结构以对称布置支撑在塔状基础的顶部,其中一个或多个风力涡轮机可以安装在两个子级之间的空间中。气瓶。两个基本为四分之一圆柱体的部分圆柱体由多个平行的肋状条制成,以下称为“条”,其具有柔性薄材料,该柔性薄材料由这些条机械地支撑。这些杆的方向垂直于地面;允许机翼偏转结构在它们之间的空间中接受水平轴或垂直轴涡轮机。杆的功能是允许附接到其上的薄材料呈现大致四分之一圆柱体形式的弯曲构造。该设备配备了风速监控设备,以及动力源和动力传输装置,例如电缆轮,链轮,齿轮或机械连杆,它们全部协同工作以使稀薄的材料沿垂直杆展开或收起。达到盛行风速的大小初步的计算流体动力学分析表明,此处提出的导风结构将风速放大了1.65倍。

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