ANALISIS PENDEKATAN SEGITIGA KECEPATAN DAN PENGUJIAN EKSPERIMENTAL TURBIN TURGO SKALA PIKO

HIDAYATULLAH, ANDRE BRILIAN and Adanta, Dendy (2022) ANALISIS PENDEKATAN SEGITIGA KECEPATAN DAN PENGUJIAN EKSPERIMENTAL TURBIN TURGO SKALA PIKO. Undergraduate thesis, Sriwijaya University.

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Abstract

The potential of renewable energy in Indonesia is so abundant that it is profitable and as a provision in realizing national energy security. However, the lack of use of NRE for electricity is due to the high production price of EBT-based power plants, making it difficult to compete with power generation, especially coal. There are solutions in overcoming the problems in the development of the EBT. Judging from the geographical situation, activating the cost of a power plant on the environment, tool development, and power plant efficiency, the Impuls turbine is one of the right solutions to be developed. Measurements were analyzed using the equations that have been determined in the turbine design procedure using analytical methods and methods to be tested experimentally. Experimental data logging was carried out simultaneously using an 8-bit data logger. Four instrumentation systems are used: tachometers, DC voltage and current multimeters, and flowmeters. From the research, the conclusions are as follows, the inlet and outlet angles of the Turgo turbine analytically show the maximum values of ΔCx and ΔCx' at 10° β2, ṁ2 and ṁ2' at 10° β2, α1and β2 with P_mech at 20° α1 and 10° β2, α1 and β2 with η at 20° α1 and 10° β2, α1 with r at 15°. In the Turgo turbine test, the maximum efficiency obtained is 25% with a load of 5 Watt, a nozzle of 8 mm, and a valve opening of 30°. This condition is better than the previous study which used coconut shell as a blade material where the peak efficiency was 22%.

Item Type: Thesis (Undergraduate)
Uncontrolled Keywords: Turbin Turgo, Piko Hidro, Segitiga Kecepatan, Desain Mekanik, Data Logger.
Subjects: T Technology > TJ Mechanical engineering and machinery > TJ1-1570 Mechanical engineering and machinery
T Technology > TJ Mechanical engineering and machinery > TJ163.26-163.5 Energy conservation
T Technology > TJ Mechanical engineering and machinery > TJ227-240 Machine design and drawing
T Technology > TJ Mechanical engineering and machinery > TJ266-267.5 Turbines. Turbomachines (General)
T Technology > TJ Mechanical engineering and machinery > TJ807-830 Renewable energy sources > TJ808.2.S6625 Renewable energy sources--Electric power production
Divisions: 03-Faculty of Engineering > 21201-Mechanical Engineering (S1)
Depositing User: Andre Brilian Hidayatullah
Date Deposited: 30 May 2022 02:42
Last Modified: 30 May 2022 02:42
URI: http://repository.unsri.ac.id/id/eprint/70756

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