Utilization of Horizontal Water System as Electrical Power Generation in Pico Scale with a Small Bulb Turbine

Akhmad Nurdin, D. A. Himawanto, S. Hadi
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Abstract

Water systems such as pipelines, pumping stations and other channels in horizontal flow have the potential as pico scale hydropower. This study aims to observe the effect of the number of blades and the blade angle on the electric power generation in the small bulb turbine on horizontal flow. This study also observes how the number of blades and blade angle affected the electrical power generated using analysis of variance. The level on the parameter number of blades used was 4, 5, 6, and 7 blades, while the level parameters on the blade angle were 15, 20, 25, and 30 degrees and each level was tested 4 replication at the discharge of 13 L/s. This paper shows the results of turbine performance in the form of angular velocity, electric power, efficiency, and the test results of the analysis of variance using SPSS 17 software. The results of the study show the number of blades 5 with a 20 degree blade angle of the best performance compared another the number of blades and the blade angle with an efficiency of about 50%. The results of the analysis of variance show the blade angle of the blade has a more dominant effect on electrical power than the number of blades.
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卧式水系统在微型水轮机发电中的应用
水系统,如管道、泵站和其他水平流动的渠道,具有微尺度水电的潜力。本研究旨在观察叶片数量和叶片角度对小球磨机水平流动发电量的影响。本研究亦透过方差分析观察叶片数目及叶片角度对发电功率的影响。叶片参数数水平为4、5、6、7片叶片,叶片角度水平参数为15、20、25、30度,每个水平在13 L/s流量下进行4次重复试验。本文以角速度、电功率、效率的形式给出了水轮机性能的结果,并利用SPSS 17软件进行方差分析的检验结果。研究结果表明,叶片数为5且叶片角为20度时,与其他叶片数和叶片角的效率相比,性能最佳,效率约为50%。方差分析结果表明,叶片角度对电功率的影响大于叶片数量。
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