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Efficiency Investigation of a Helical Turbine for Harvesting Wind Energy.

机译:螺旋风轮机用于收集风能的效率研究。

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摘要

In recent times, there has been an increased interest in wind energy due to concerns about the pollution caused by burning fossil fuels and their rising prices. Most wind turbines in use today are conventional wind mills with three airfoil shaped blades arraigned around a horizontal axis. These turbines must be turned to face into the wind and in general require significant air velocities to operate. Another style of turbine is one where the blades are positioned vertically or transverse to the axis of rotation. These turbines will always rotate in the same direction regardless of the fluid flow. Due to the independence from the direction of the fluid flow, these turbines have found applications in tidal and surface current flows. To see how effective this sort of turbine would be in air, a helical turbine based on the designs and patents of Dr. Alexander M. Gorlov was chosen. His turbine was developed to improve upon the design of Georges J. M. Darrius by increasing the efficiency and removing pulsating stresses on the blades, caused by the blades hitting their aerodynamic stall in the course of rotation, which often resulted in fatigue failure in the blades or the joints that secured them to the shaft. The turbine takes the Darrius type turbine, which has a plurality of blades arranged transverse to the axis of rotation, and adds a helical twist to their path, insuring that regardless of the position of the turbine, a portion of the blade is always positioned in the position that gives maximum lift. This feature reduces the pulsations that are common in a Darrius type turbine. In his investigations, Gorlov claims that his turbine is significantly more efficient than Darrius' and has achieved overall efficiencies between 30% and 35%. For this investigation, a helical turbine was tested inside and outside a wind tunnel using an electric generator (inside tests only) and a torque meter paired with a tachometer to measure the output power of the turbine and calculate its efficiency. In the end, the turbine did not come close to the claimed 30% efficiency, reaching at best an efficiency of around 0.35%. Further investigations should be made to determine why the results from this investigation were as low as they are.
机译:近年来,由于对燃烧化石燃料造成的污染及其价格上涨的担忧,人们对风能的兴趣日益增加。当今使用的大多数风力涡轮机是传统的风车,具有围绕水平轴布置的三个翼型叶片。这些涡轮机必须面对风,并且通常需要相当大的风速才能运行。涡轮的另一种类型是叶片垂直或横向于旋转轴放置的涡轮。这些涡轮机将始终沿相同方向旋转,而与流体流动无关。由于不受流体流动方向的影响,这些涡轮机已在潮汐和表面电流中得到应用。为了了解这种涡轮机在空气中的有效性,选择了基于Alexander M. Gorlov博士的设计和专利的螺旋涡轮机。开发他的涡轮机是为了提高Georges JM Darrius的设计水平,从而提高效率并消除叶片上的脉动应力,这些应力是由叶片在旋转过程中撞到气动失速引起的,这通常会导致叶片疲劳失效或将它们固定在轴上的接头。该涡轮机采用Darrius型涡轮机,该涡轮机具有多个横向于旋转轴布置的叶片,并在其路径上增加了螺旋扭曲,从而确保了无论涡轮机的位置如何,叶片的一部分始终位于提供最大升力的位置。此功能减少了Darrius型涡轮机中常见的脉动。在调查中,戈洛夫声称他的涡轮机比达里乌斯的涡轮机效率要高得多,总体效率在30%到35%之间。为了进行这项研究,在螺旋桨式涡轮机的内部和外部使用了发电机对风洞进行了测试(仅用于内部测试),并将扭矩计与转速表配对以测量涡轮机的输出功率并计算其效率。最终,该涡轮机的效率没有达到所声称的30%,最高只能达到约0.35%的效率。应该进行进一步的调查以确定该调查的结果为何如此之低。

著录项

  • 作者

    Willard, Nathan.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Alternative Energy.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2011
  • 页码 105 p.
  • 总页数 105
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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