Prototype Listrik Tenaga Pikohidro (PPT 1.0) untuk Alat Bantu Identifikasi Potensi dan Praktikum Mahasiswa Energi

Authors

  • Masrur Alatas Program Studi Teknik Sistem Energi Institut Teknologi Yogyakarta, Indonesia
  • Ucik Ika Fenti Styana Program Studi Teknik Sistem Energi, Institut Teknologi Yogyakarta, Indonesia
  • Dimas Taufiq Ridlo Program Studi Teknik Sistem Energi, Institut Teknologi Yogyakarta`, Indonesia
  • Fifin Hindarti Program Studi Teknik Sistem Energi, Institut Teknologi Yogyakarta, Indonesia
  • Adi Kurniawan Program Studi Teknik Sistem Energi, Institut Teknologi Yogyakarta, Indonesia

DOI:

https://doi.org/10.30588/jeemm.v9i2.2422

Keywords:

identifikasi potensi pikohidro, turbin pikohidro portable, penerangan jalan, alat praktikum

Abstract

Indonesia's energy needs continue to rise, while its fossil fuel resources are limited. The national energy mix for renewable energy programs is planned to reach 31% by 2030. Indonesia's pico-hydro potential is substantial, found in mountainous areas, rural areas, suburbs, and islands. Potential is also found in primary, secondary, and tertiary irrigation areas, small rivers, waterfalls, pond circulation, and even in rainwater gutters. The research method for identifying potential in the field used a Portable Pico-hydro Turbine (PPT 1.0) with direct testing and student laboratory experiments. The results of the pico-hydro prototype study can be used to identify 26 potential pico-hydro points, which can function as 100-watt street lighting and support student energy laboratory equipment.

References

Adanta, D. (2020). Investigasi Konstanta bachelor dan Kolmogorov Model Turbulen k-e Standard untuk Turbin Piko Hidro Jenis Crossflow (Investigation of the Constant of Bachelor and Kolmogorov on Standard k-epsilon Turbulence Model for Cross-Flow Pico-Hydro Turbine). Universitas Indonesia.

Alatas, M. (2024). ENERGI BARU TERBARUKAN & KONVERSI ENERGI (EBTKE), SEJARAH KINCIR AIR & TURBIN AIR. Penerbit Tahta Media. Retrieved from https://tahtamedia.co.id/index.php/issj/article/view/860

Alatas, M., Budiastuti, M. T. S., Gunawan, T., & Prabang Setyono, A. (2022). SPIRAL CYCLE MICRO-HYDRO COMMUNITY SYSTEM MODEL FOR SUSTAINABLE DEVELOPMENT IN YOGYAKARTA, INDONESIA. Penerbit UMT Journal of Sustainability Science and Management, 17, 44–61. https://doi.org/10.46754/jssm.2022.09.004

Alatas, M., Sri Budiastuti, M. T., Gunawan, T., & Setyono, P. (2021). Stage of potential identification irrigation channel topography analysis for micro-hydro power in the Kalibawang irrigation primary channel, Yogyakarta, Indonesia. International Journal of Sustainable Development and Planning, 16(5), 953–964. https://doi.org/10.18280/IJSDP.160516

Alatas, M., Theresia Sri Budiastuti, M., Gunawan, T., & Prabang Setyono. (2021). The Potential of Micro-hydro Power Cascade in Irrigation Channel of Kalibawang, Indonesia. Internasional Journal Advanced Science Engineering Information Technology, 11(5), 1736–1745. https://ijaseit.insightsociety.org/index.php/ijaseit/article/view/12593/pdf_1881?utm_source=chatgpt.com

Boroomandnia, A., Rismanchi, B., & Wu, W. (2022). A review of micro hydro systems in urban areas: Opportunities and challenges. Renewable and Sustainable Energy Reviews, 169, 112866. https://doi.org/10.1016/J.RSER.2022.112866

Dhiman, A., & Sachdeva, G. (2022). Energy and Exergy Analysis of a Pressurized Solar Cooking System Based on a Parabolic Dish Collector. Evergreen, 9(4), 1168–1180. https://doi.org/10.5109/6625728

Direktorat Jendral Energi Baru Terbarukan dan Konversi Energi. (2015). ENERGI TERBARUKAN : Energi Untuk Kini Dan Nanti.

Faizal, M. (2018). Sepekan, Tim Ekspedisi Papua Terang Berhasil Survei 292 Desa. SindoNews. https://ekbis.sindonews.com/berita/1328656/34/sepekan-tim-ekspedisi-papua-terang-berhasil-survei-292-desa?utm_source=chatgpt.com

Groppi, D., Pfeifer, A., Garcia, D. A., Krajačić, G., & Duić, N. (2021). A review on energy storage and demand side management solutions in smart energy islands. Renewable and Sustainable Energy Reviews, 135, 110183. https://doi.org/10.1016/J.RSER.2020.110183

Karim, R., Ghazali, F., & Ansari, A. H. (2020). Renewable Energy Regulations in Indonesia and India: A Comparative Study on Legal Framework. Journal of Indonesian Legal Studies, 5(2), 361–390. https://doi.org/10.15294/JILS.V5I2.41986

Marzia, K., Hasan, M. F., Miyazaki, T., Saha, B. B., & Koyama, S. (2018). Key factors of solar energy progress in Bangladesh until 2017. Evergreen, 5(2), 78–85. https://doi.org/10.5109/1936220

Maulidia, M., Dargusch, P., Ashworth, P., & Ardiansyah, F. (2019). Rethinking renewable energy targets and electricity sector reform in Indonesia: A private sector perspective. Renewable and Sustainable Energy Reviews, 101, 231–247. https://doi.org/10.1016/J.RSER.2018.11.005

Naimah, M., Pratama, F. D. N., & Ibadurrohman, M. (2022). Photocatalytic Hydrogen Production Using Fe-Graphene/TiO2 Photocatalysts in the Presence of Polyalcohols as Sacrificial Agents. Evergreen, 9(4), 1244–1251. https://doi.org/10.5109/6625736

PERPRES No. 22 Tahun 2017. (2017). https://peraturan.bpk.go.id/Details/68772

Rahman, M. M., Saha, S., Majumder, M. Z. H., Suki, T. T., Rahman, M. H., Akter, F., Haque, M. A. S., & Hossain, M. K. (2022). Energy Conservation of Smart Grid System Using Voltage Reduction Technique and Its Challenges. Evergreen, 9(4), 924–938. https://doi.org/10.5109/6622879

Rudien, T. C., Didane, D. H., Batcha, M. F. M., Abdullah, K., Mohd, S., Manshoor, B., & Al-Alimi, S. (2021). Technical Feasibility Analysis of Wind Energy Potentials in two sites of East Malaysia: Santubong and Kudat. Evergreen, 8(2), 271–279. https://doi.org/10.5109/4480703

Subekti, R. A., Prawara, B., Susatyo, A., Fudholi, A., Wijaya, S. K., & Sudarmaji, A. (2022). Design and performance of very low head water turbines using a surface vorticity model algorithm. International Journal of Power Electronics and Drive Systems (IJPEDS), 13(2), 1140–1149. https://doi.org/10.11591/IJPEDS.V13.I2.PP1140-1149

Sudibyo, H., Pikra, G., & Fudholi, A. (2021). The Potential of Hydro Renewable Energy Technology to Electricity Remote Villages in Papua and Maluku Islands, Indonesia. IOP Conference Series: Earth and Environmental Science, 927(1), 012002. https://doi.org/10.1088/1755-1315/927/1/012002

Suharyati, Hesti Pambudi, S., Lastiko Wibowo, J., & Indah Pratiwi, N. (2019). ENERGI INDONESIA 2019 SEKRETARIAT JENDERAL DEWAN ENERGI NASIONAL.

Sulaeman, D., Arif, S. S., & Sudarmadji. (2018). Trash-polluted irrigation: characteristics and impact on agriculture. IOP Conference Series: Earth and Environmental Science, 148(1), 012028. https://doi.org/10.1088/1755-1315/148/1/012028

Sumino, M. (2019, September 15). Ultra-Small Water Power Generator - YouTube. Youtube. https://www.youtube.com/watch?v=XjEgFlngZ04

Suprayogi, S., Gunawan, T., Herumurti, S., Prihantarto, W. J., & Alatas, M. (2022). Grand Design for Merapi Irrigation Channel System Using Watershed and River Region Approaches based on Community Development in Yogyakarta, Indonesia. ASEAN Journal on Science and Technology for Development, 39(1), 5. https://doi.org/10.29037/ajstd.740

Walujanto, Suharyati, Sadmoko Hesti Pambudi, Jamaludin Lastiko Wibowo, & Nurina Indah Pratiwi. (2018). Outlook Energi Indonesia 2018. https://www.esdm.go.id/assets/media/content/content-outlook-energi-indonesia-2018-bahasa-indonesia.pdf

Williamson, S. J., Stark, B. H., & Booker, J. D. (2014). Low head pico hydro turbine selection using a multi-criteria analysis. Renewable Energy, 61, 43–50. https://doi.org/10.1016/J.RENENE.2012.06.020

YoosefDoost, A., & Lubitz, W. D. (2020). Archimedes Screw Turbines: A Sustainable Development Solution for Green and Renewable Energy Generation—A Review of Potential and Design Procedures. Sustainability 2020, Vol. 12, Page 7352, 12(18), 7352. https://doi.org/10.3390/SU12187352

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Published

2025-11-12

How to Cite

Masrur Alatas, Ucik Ika Fenti Styana, Dimas Taufiq Ridlo, Fifin Hindarti, & Adi Kurniawan. (2025). Prototype Listrik Tenaga Pikohidro (PPT 1.0) untuk Alat Bantu Identifikasi Potensi dan Praktikum Mahasiswa Energi. Jurnal Engine: Energi, Manufaktur, Dan Material, 9(2), 226–236. https://doi.org/10.30588/jeemm.v9i2.2422

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