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Impulse (Turgo and Pelton) turbine performance characteristics and their impact on pico-hydro installations

机译:脉冲式(Turgo和Pelton)涡轮机性能特征及其对微水电装置的影响

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摘要

Pico-hydropower is a viable technology that can be integrated into a decentralized, off-grid approach to rural electrification in regions that currently have only limited access to electricity. The Turgo turbine is classified as an impulse turbine, similar to the Pelton wheel, often used in pico-hydro systems. Both offer high efficiency for a broad range of site conditions, but the primary difference is that the Turgo can handle significantly higher water flow rates, allowing for efficient operation in lower head ranges and thus potentially expanding the geographic viability. Published data on Turgo operating performance are limited; despite the differences, discussion thereof in design manuals is generally lumped in with the discussion of Pelton wheels. In this study, a laboratory-scale test fixture was constructed to test the operating performance characteristics of impulse turbines. Tests were carried out to determine the effect on turbine efficiency of variations in speed ratio and jet misalignment on two Turgo turbines. The results were compared to similar tests in the same fixture on a Pelton turbine. Under the best conditions, the Turgo turbine efficiency was observed to be over 80% at a speed ratio of approximately 0.46, which is quite good for pico-hydro-scale turbines. Peak efficiencies for both the Pelton and the Turgo turbines occurred at lower than theoretical ideal speed ratios based on a momentum balance; the reduction in speed ratio at which peak efficiency occurs is likely caused by inefficiencies in the turbine. Tests of jet misalignment showed that moving the jet to the inside or outside edge of the turbine blades caused a drop in Turgo efficiency of 10-20% and reduced the optimal speed ratio by 0.03 (6.5%). Radial misalignment had a significant adverse impact on both Turgo and Pelton turbines, however, angular misalignment of the jet is more of a concern for the Turgo turbine. The results stress the importance of proper system design and installation, and increase the knowledge base regarding Turgo turbine performance that can lead to better practical implementation in pico-hydro systems.
机译:微型水力发电是一项可行的技术,可以集成到目前电力有限的地区的农村电气化的分散,离网方法中。 Turgo涡轮机被归类为脉冲式涡轮机,类似于Pelton轮,通常用于皮水系统。两者在各种工况条件下都具有很高的效率,但是主要的区别是Turgo可以处理更高的水流量,从而可以在较低的水头范围内高效运行,从而有可能扩大地理上的可行性。有关Turgo运营绩效的已发布数据有限;尽管有差异,但设计手册中的讨论通常会与Pelton车轮的讨论结合在一起。在这项研究中,建造了实验室规模的测试夹具,以测试脉冲涡轮的运行性能特征。进行测试以确定两台Turgo涡轮机的速比变化和射流未对准对涡轮机效率的影响。将结果与在Pelton涡轮机上的相同固定装置中的类似测试进行了比较。在最佳条件下,观察到的Turgo涡轮效率在约0.46的速比下可达到80%以上,这对于皮克水力式涡轮来说是相当不错的。基于动量平衡,Pelton和Turgo涡轮机的峰值效率均低于理论理想速比。涡轮效率低下可能导致出现峰值效率的速度比降低。射流未对准的测试表明,将射流移至涡轮叶片的内部或外部边缘会导致Turgo效率下降10-20%,并使最佳速度比降低0.03(6.5%)。径向不对准对Turgo和Pelton涡轮都产生了严重的不利影响,但是,射流的角度不对准是Turgo涡轮更关心的问题。结果强调了正确的系统设计和安装的重要性,并增加了有关Turgo涡轮机性能的知识基础,这可导致在皮水系统中更好地实际实施。

著录项

  • 来源
    《Renewable energy》 |2013年第2期|959-964|共6页
  • 作者

    Bryan R. Cobb; Kendra V. Sharp;

  • 作者单位

    School of Mechanical, Industrial & Manufacturing Engineering, 204 Rogers Hall, Oregon State University, Corvallis, OR 97331, USA;

    School of Mechanical, Industrial & Manufacturing Engineering, 204 Rogers Hall, Oregon State University, Corvallis, OR 97331, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hydropower; turgo turbine; pelton; rural electrification; pico-hydro; micro-hydro;

    机译:水电斜击式涡轮机佩尔顿农村电气化;皮氢微水;

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