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The Effect of Blade Angle on Two-Stage Water Turbine Against Power and Efficiency
Dedy Apri Haryono (a), Arasy Fahruddin (a*), Ali Akbar (a), Mulyadi (a)

a) Mechanical Engineering Department, Universitas Muhammadiyah Sidoarjo, Jl. Raya Gelam No.250, 61271, Sidoarjo, Indonesia
*arasy.fahruddin[at]umsida.ac.id


Abstract

The Indonesian region has abundant alternative energy sources that can be used to meet electrical energy needs. One potential alternative energy source is water energy that can be converted into electrical energy with a water turbine. Water turbines are generally one stage, whereas water energy on the output side is still quite large. In this study, experiments were made using a two-stage micro water turbine model with blade angle variations on the second stage turbine. The type of turbine used in this study is a crossflow turbine with a vertical shaft. The results show that the 45 degree blade angle on the second stage turbine can increase the second stage turbine rotational speed, and also increase the first stage turbine rotational speed. So that the total power of the turbine increases up to 29% compared to 15 degrees blade angle. This indicates that the appropriate selection of the second stage turbine blade angle will significantly affect the total turbine power and its efficiency.

Keywords: Blade angle; Two-stage; Water turbine; Crossflow turbine

Topic: Mechanical Engineering

Link: https://ifory.id/abstract/VwjqkCetgn4B

Conference: The 4th Annual Applied Science and Engineering Conference (AASEC 2019)

Plain Format | Corresponding Author (Arasy Fahruddin)

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