垂直轴螺旋风力机设计、仿真及性能评价

Bikash Karki, Ashok Subedi, Himal Sigdel, Pradeep Bartaula
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摘要

本报告是关于VAHWT的设计、仿真、制造和性能评估。利用测试得到的实验数据和CFD方法得到的数据进行性能评价。从实验得到的数据来看,所制作的VAHWT在低切割速度3.18 m/s下工作,在8 m/s风速下的最大输出功率为2.656瓦。在11.53 m/s的速度下,转子叶片的最大转速记录为722.2 rpm,表明其风力发电的潜力。此外,从两个过程中获得的数据,通过图表分析,显示出相似的性质斜率方向。这仅仅意味着通过实验产生令人满意的数据。此外,力学损失的计算结果与CFD计算结果存在较大差异。最后,应用CFD方法对变展弦比涡轮进行了最大效率评价,结果表明展弦比为0.6531的涡轮效率最高,性能系数为36.396%。然而,由于转速和试验台的限制,制作了展弦比为0.6956的动叶并用于实验评估。从这两个过程中获得的数据被认为是相互相关的。因此,该项目的详细研究表明,VAHWT作为一种良好的能源生产系统,有进一步研究的需要和机会。在像尼泊尔这样城市化程度越来越高的国家,这也是一种经济的风能提取方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, simulation and performance evaluation of vertical axis helical wind turbine
This report is all about the design, simulation, fabrication, and performance evaluation of the VAHWT. The experimental data obtained via testing and data from CFD approach are used for performance evaluation. From the data obtained experimentally, the VAHWT so fabricated has been found to operate at the low cut-in speed of 3.18 m/s and maximum power output has been found to be 2.656 watts at the wind speed of 8 m/s. The maximum rpm of the rotor blade is recorded to be 722.2 rpm at the velocity of 11.53 m/s signifying its potentiality of wind power production. Besides, the data so obtained from both the process when analyzed through graph plots, has shown the similar nature slope wise. This simply signifies the generation of satisfactory data via experiment. In addition, the mechanical losses has shown difference between the experimental and data obtained via CFD approach. At the end, when applying CFD approach for evaluation of maximum efficient turbine varying the aspect ratio, has shown the turbine with aspect ratio of 0.6531 to be the most efficient with performance coefficient of 36.396%. However due to limitation in RPM and Test rig, the rotor blade with aspect ratio of 0.6956 was fabricated and used for evaluation experimentally. The data so obtained from both the process were concluded to be relevant to each other. Thus, the detail study on this project has led to the need and opportunity of VAHWT to be further researched and can be developed as a good source of energy producing system. It can also be economical method of power extraction from wind in the countries like Nepal with growing urbanization.
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