Study of water channels and gates to improve water wheel performance
Abstract
Glintung Water Street (GWS) in Malang City harnesses water flow in its canal to drive water wheels for electricity generation. However, the discharge of water has not been optimized, necessitating the design of the canal and sluice gate to maximize discharge while mitigating flooding risks. This research aims to determine the optimal design and operational system of the sluice gate to minimize backwater impact. Data collection involved observational techniques and literature review, including hydrology, map, and hydraulic data. Results indicated that the required discharge for the micro-hydro power plant (PLTMH) in the Glintung Water Street (GWS) area was 88 liters or approximately 0.088m3/s. The primary channel's flow rate was measured at 0.104 m3/s, with planned channel inflow at 0.088 m3/s. The sluice gate effectively prevented backwater impact, as water levels did not surpass the sluice height. Planning involved a sluice gate made of mild steel plate (100 cm x 100 cm) with a door height of 200 cm and a thickness of 0.18 cm, operated by a handlebar with a diameter of 2 cm. In conclusion, the backwater effect on the primary channel's water level was minimal, affirming the efficacy of the designed sluice gate.
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Alkatiri, S. S. B. (2020). Perencanaan sistem drainase Prumnas Griya Permai Pulau Buru-Namlea [Thesis, Universitas Persada Indonesia YAI]. Yayasan Administrasi Indonesia.
Cahyadi, H., & Gazali, A. (2022). Perencanaan drainase Jalan Binuang Pulau Pinang Kabupaten Tapin. 1-13
Fathurrahman. (2020). Perencanaan saluran drainase bawah tanah di Desa Midang Kecamatan Gunung Sari, Kabupaten Lombok Barat [Thesis, Universitas Muhammadiyah Mataram].
Kementerian Pekerjaan Umum Direktorat Jenderal Sumber Daya Air Direktorat Irigasi dan Rawa. (2013), Perencanaan Jaringan Irigasi Kp-01.
Ma’arif, F. (2012). e-Learning Mekanika Teknik 01. Universitas Negeri Yogyakarta.
Nasir, R. I. (2019). Perencanaan sistem drainase kawasan Perumahan Royal Indah Regency [Thesis, Universitas Bhayangkara Surabaya].
Parse, F. A. (2018). Perencanaan saluran drainase dengan analisis debit banjir metode rasional (Studi kasus Desa Petapahan Kecamatan Gunung Toar). Jurnal Perencanaan, Sains dan Teknologi (JUPERSATEK), 1(2), 31-43.
Sarminingsih, A. (2018). Pemilihan metode analisis debit banjir rancangan embung coyo Kabupaten Grobogan. Jurnal Presipitasi: Media Komunikasi dan Pengembangan Teknik Lingkungan, 15(1), 53-61. https://doi.org/10.14710/jis.%25v.%25i.%25Y.585-595
Sedyowati, L., Yuniarti, S., & Sufiyanto, S. (2022). Small-scale renewable energy technology to support the sustainability of a food security village in Malang City. In E3S Web of Conferences, 359, 01005. EDP Sciences. https://doi.org/10.1051/e3sconf/202235901005
Sulaecha, E., & Setiawan, B. I. (2020). Desain pintu air berbantu komputer untuk saluran irigasi tersier di Daerah Irigasi Cikarawang Bogor. Jurnal Teknik Sipil dan Lingkungan, 5(3), 137-152. https://doi.org/10.29244/jsil.5.3.137-152
Suripin, S. (2004). Sistem drainase perkotaan yang berkelanjutan.Yogyakarta: Andi.
Usman, U., & Rahman, R. (2016). Perencanaan saluran drainase jalan lingkar tengah (middle ring road) Makassar [Thesis, Universitas Muhammadiyah Makassar].
Wijaya, H. S. (2020). Studi perencanaan pintu air irigasi dengan bahan baja ringan pada saluran irigasi tambak di Desa Permisan Kecamatan Jabon Kabupaten Sidoarjo. Portal: Jurnal Teknik Sipil, 12(2), 65-72. http://dx.doi.org/10.30811/portal.v12i2.1979
DOI: https://doi.org/10.26905/jp.v20i2.12752
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