小型水轮机低水头试验优化

S. Williamson, B. Stark, J. Booker
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引用次数: 18

摘要

农村电气化可以帮助减轻贫困,为日常家庭和创收任务提供能源。在有适当资源的地方,微型水力发电是一种成本效益高的发电方法,特别是在农村地区。对于低水头的微型水电,传统上使用螺旋桨涡轮机。然而,这些都是非常具体的现场和效率显着降低,当不运行在额定条件下。本文利用二维流体方程推导了涡轮的6个关键实验参数,并在规模样机上进行了实验变化,找出了对效率的影响,得到了效率的优化设计。测试结果显示在3.5米的头部。研究发现,涡轮效率对射流垂直瞄准位置非常敏感,最佳瞄准位置为距杯顶12 mm处,射流倾角为20°。喷管直径的临界值为20毫米,高于或低于该临界值涡轮效率就会降低。涡轮直径从7.5倍减少到喷嘴直径的5倍,对最大效率的影响最小,然而,这提供了转速从490到750 RPM的增加。实验发现,该涡轮的最大射流机械效率超过90%,对水头和流量的敏感性低于螺旋桨涡轮。这表明,Turgo涡轮机可以有效地使用在低水头范围内的现场条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental optimisation of a low-head pico hydro turgo turbine
Rural electrification can help to alleviate poverty, providing energy for daily household and income generation tasks. Where appropriate resources exist, pico hydropower is a cost effective method of electrical generation, especially in a rural context. For pico hydropower at low heads, propeller turbines are traditionally used. However, these are very site specific and the efficiency dramatically reduces when not operated at rated conditions. This paper derives six key experimental parameters for a Turgo turbine using two-dimensional fluid equations, which are experimentally varied to find the affect on the efficiency on a scale prototype, obtaining a design that is optimised for efficiency. Test results are presented up to heads of 3.5 m. It is found that the turbine efficiency is very sensitive to jet vertical aim position, with the optimum aim at 12 mm from the top of the cup with a jet inclination angle of 20°. The nozzle diameter is found to have a critical value of 20 mm, above and below which the turbine efficiency reduces. The turbine wheel diameter is reduced from 7.5 times to 5 times the nozzle diameter with minimal effect on the maximum efficiency, however, this provides an increase in the rotational speed from 490 to 750 RPM. The maximum experimental jet-to-mechanical efficiency is found to be over 90% for the scaled turbine, with lower sensitivity to head and flow rate than propeller turbines. This demonstrates that Turgo turbines can be used efficiently at low heads over a range of site conditions.
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