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Design of airborne wind turbine and computational fluid dynamics analysis.

机译:机载风力涡轮机的设计和计算流体动力学分析。

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摘要

Wind energy is a promising alternative to the depleting non-renewable sources. The height of the wind turbines becomes a constraint to their efficiency. Airborne wind turbine can reach much higher altitudes and produce higher power due to high wind velocity and energy density. The focus of this thesis is to design a shrouded airborne wind turbine, capable to generate 70 kW to propel a leisure boat with a capacity of 8-10 passengers. The idea of designing an airborne turbine is to take the advantage of higher velocities in the atmosphere.;The Solidworks model has been analyzed numerically using Computational Fluid Dynamics (CFD) software StarCCM+. The Unsteady Reynolds Averaged Navier Stokes Simulation (URANS) with K-epsilon turbulence model has been selected, to study the physical properties of the flow, with emphasis on the performance of the turbine and the increase in air velocity at the throat. The analysis has been done using two ambient velocities of 12 m/s and 6 m/s. At 12 m/s inlet velocity, the velocity of air at the turbine has been recorded as 16 m/s. The power generated by the turbine is 61 kW. At inlet velocity of 6 m/s, the velocity of air at turbine increased to 10 m/s. The power generated by turbine is 25 kW.
机译:风能是一种正在消耗的不可再生资源的有前途的替代方法。风力涡轮机的高度成为其效率的约束。由于高风速和高能量密度,机载风力涡轮机可以到达更高的高度并产生更高的功率。本文的重点是设计一种带罩的机载风力涡轮机,该涡轮机能够产生70 kW功率,以驱动休闲船,可容纳8-10名乘客。设计机载涡轮的想法是要利用大气中较高的速度。;已使用计算流体动力学(CFD)软件StarCCM +对Solidworks模型进行了数值分析。选择了具有K-ε湍流模型的非稳态雷诺平均Navier斯托克斯模拟(URANS),以研究流动的物理特性,重点是涡轮的性能和喉部空气流速的增加。使用两个12 m / s和6 m / s的环境速度进行了分析。在入口速度为12 m / s时,涡轮机处的空气速度已记录为16 m / s。涡轮机产生的功率为61千瓦。在入口速度为6 m / s时,涡轮机处的空气速度增加到10 m / s。涡轮机产生的功率为25千瓦。

著录项

  • 作者

    Anbreen, Faiqa.;

  • 作者单位

    California State University, Long Beach.;

  • 授予单位 California State University, Long Beach.;
  • 学科 Aerospace engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 60 p.
  • 总页数 60
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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