The Effect of Inlet Notch Variations on Turbine Speed in Pico-hydro Power Plants

Naufal Praska Zakariz, Anggara Trisna Nugraha
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Abstract

Energy is an important element in the continuity of human activities. Indonesia has the potential to produce 94.3GigaWatt of electricity in the hydropower sector, but only a few can be utilized, which is only 4.2GigaWatt [1]. This study aims to utilize renewable energy that has not been utilized optimally, especially in Indonesia. This study exploits the potential of water flow from the Coban Wonoasri River, Bangun Village, Munjungan District, Trenggalek Regency which has a low head but has a fairly heavy discharge. The basin cone for making vortex flow has a canal length of 1450mm, a canal width of 231.5mm, and a canal height of 500mm with a basin cone diameter of 560mm, a basin cone height of 700mm, and a water outlet diameter of 90mm. A vortex turbine with a diameter of 270mm and a height of 210mm with a total of 8 blades, a blade curvature of 30°, and a blade tilt of 22.5° was used for research on this low head river. The inlet notch variations that will be used are angles of 0°, 17.82°, 19.30°, and 19.98°. The inlet notch with a width of 0° and a discharge of 8.81l/s cannot produce turbine rotation because the vortex flow is not formed properly. Inlet notch with a width of 17.82° and 19.30° produces an average turbine speed of 157.2 rpm and 159.2 rpm. The variation of the inlet notch with a width of 19.98° produces the best turbine speed of 162.7 rpm with a flowrate of 7.72l/s.
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水力发电厂进口缺口变化对水轮机转速的影响
能源是人类活动连续性的重要因素。印尼在水电领域有潜力生产94.3吉瓦的电力,但能被利用的很少,只有4.2吉瓦[1]。这项研究的目的是利用可再生能源,没有得到充分利用,特别是在印度尼西亚。本研究利用了Trenggalek县Munjungan区Bangun村Coban Wonoasri河的水流潜力,该河水头低,但流量相当大。制造涡流的盆锥,槽长1450mm,槽宽231.5mm,槽高500mm,盆锥直径560mm,盆锥高度700mm,出水口直径90mm。采用直径为270mm,高度为210mm的涡轮机,共8片叶片,叶片曲率为30°,叶片倾角为22.5°,对这条低水头河流进行了研究。将使用的进口缺口变化角为0°,17.82°,19.30°和19.98°。入口缺口宽度为0°,流量为8.81l/s,由于旋涡没有正确形成,无法产生涡轮旋转。宽度为17.82°和19.30°的进口缺口产生了157.2 rpm和159.2 rpm的平均涡轮速度。进气道缺口宽度为19.98°时,最佳涡轮转速为162.7 rpm,流量为7.72l/s。
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