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Performance of Microhydro Power Plant in Tlocor Village, Banyuwangi, East Java for Households and Post-Harvest Processing Rahmanto, Dedy Eko; Wibowo, Michael Joko; Faizin, Nur; Fahriannur, Ahmad; Aurelya , Azza Auliya Rahma
Jurnal Agroteknologi Vol. 19 No. 2 (2025)
Publisher : Fakultas Teknologi Pertanian Universitas Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/jagt.v19i2.60014

Abstract

Microhydro power plants utilize the kinetic energy of water to spin a turbine and the turbine rotation is used to spin a generator so that it can produce electricity. One example of a microhydro power plant is the Tlocor microhydro located in Tlocor village, Banyuwangi, East Jawa, Indonesia. Tlocor microhydro uses a crossflow turbine and 8 kw synchronous generator. Tlocor microhydro needs to be investigated to determine its performance and development potential. The research was carried out by observing water discharge using a current meter and observing electrical parameters using a power logger and testing voltage drop. The river water discharge is 0.36 m3/s and the turbine used is 0.21 m3/s. The normal daily electrical voltage for Tlocor microhydro is 217.37 volts with a voltage drop at the farthest consumer of 0.68 volts. The resulting electrical frequency is an average of 49.9 Hz. The normal daily electrical power produced by Tlocor microhydro reaches 2605.5 watts. The micro-hydro electrical power produced still has the potential to be increased if the water flow entering the turbine is increased. This can be done if the need for electrical power increases or is used for economic empowerment of communities using Tlocor microhydro.Keywords: electrical, generator, microhydro, water discharge
Performance of Microhydro Power Plant in Tlocor Village, Banyuwangi, East Java for Households and Post-Harvest Processing Rahmanto, Dedy Eko; Wibowo, Michael Joko; Faizin, Nur; Fahriannur, Ahmad; Aurelya , Azza Auliya Rahma
Jurnal Agroteknologi Vol. 19 No. 2 (2025)
Publisher : Fakultas Teknologi Pertanian Universitas Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/jagt.v19i2.60014

Abstract

Microhydro power plants utilize the kinetic energy of water to spin a turbine and the turbine rotation is used to spin a generator so that it can produce electricity. One example of a microhydro power plant is the Tlocor microhydro located in Tlocor village, Banyuwangi, East Jawa, Indonesia. Tlocor microhydro uses a crossflow turbine and 8 kw synchronous generator. Tlocor microhydro needs to be investigated to determine its performance and development potential. The research was carried out by observing water discharge using a current meter and observing electrical parameters using a power logger and testing voltage drop. The river water discharge is 0.36 m3/s and the turbine used is 0.21 m3/s. The normal daily electrical voltage for Tlocor microhydro is 217.37 volts with a voltage drop at the farthest consumer of 0.68 volts. The resulting electrical frequency is an average of 49.9 Hz. The normal daily electrical power produced by Tlocor microhydro reaches 2605.5 watts. The micro-hydro electrical power produced still has the potential to be increased if the water flow entering the turbine is increased. This can be done if the need for electrical power increases or is used for economic empowerment of communities using Tlocor microhydro.Keywords: electrical, generator, microhydro, water discharge
Analisis Potensial Energi Terbarukan dengan Pemetaan Quantum Gis-Based di Desa Karangpring Faizin, Nur; Wibowo, Michael Joko; Febriani, Siti Diah Ayu; Qanitah
JSED Vol. 4 No. 1 (2026): Journal of Sustainable Energy Development
Publisher : Universitas Jember

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19184/jsed.v4i1.60016

Abstract

This research aims to map areas with renewable energy potential and product diversification for solar power plants (PLTS), microhydro, and biogas in the Karangpring Village Jember Regency. The research was conducted throughout Jember Regency from March to September 2025. The mapping was conducted through a combination of digitization (database and spatial data analysis using Quantum GIS), surveys, and public consultations as a map correction process. This research was conducted in five stages: potential identification using secondary data, field surveys, data collection and acquisition, spatial data analysis, and map layout. The area of Karangpring Village is 1,259,435 hectares, consisting of four hamlets: Krajan, Durjo, Gendir, and Karangpring. The population of Karangpring Village is 7,772, and the majority are farmers. Based on geographical data, Karangpring village is located at 8°04'57.9"-8°08'11.9" South Latitude and 113°38'38.3"-113°40'22.3" East Longitude. Karangpring Village has relatively high renewable energy potential: 1,232 MWh from biogas, 10.54 MWh from wind, and 52,934 MWh/m2 from solar energy. Durjo Hamlet is the largest hamlet and has the largest renewable energy generation potential: 266.76 kWh from biogas, 3.4 MWh from wind, and 13,076 MWh/m2 from solar energy.