PERANCANGAN TURBIN ANGIN SUMBU VERTIKAL SEBAGAI PEMBANGKIT LISTRIK (SKALA LABORATORIUM)
DOI:
https://doi.org/10.5281/zenodo.10122311Keywords:
Daya, Elfisielnsi, Kecepatan AnginAbstract
Wind is one of the newest energy sources that is becoming increasingly popular nowadays. The use of wind energy can be converted into electrical energy for wind turbine cells. However, there are two types of wind turbines, namely horizontal and vertical. Holistic wind turbines are usually used in one direction while vertical wind turbines are used in all directions. The shape of the blades and the number of wind turbine blades greatly influence the power produced. So the research this time is to find out the influence of the blade shape that has been varied and the number of blades with wind speeds of 2.5 m/s, 3 m/s, 3.5 m/s and 4 m/s on the resulting generator power so that the efficiency results What has been obtained can be designed to design wind turbines with varied blade shapes. Testing was carried out in a laboratory designed independently with a wind source using a fan and Dimmelr air conditioner. The results of tests that have been carried out have the highest gelnelratolr power known at 4 blades with a wind speed of 4 m/s with a power value of 0.34 watts while the smallest gelnelratolr power is known at 2 blades with a wind speed of 2.5 m/s with rated power 0.04 Watt. So that the research results from all the tests, the highest efficiency value was obtained at 4 blades with a wind speed of 2.5 m/s with a value of 24.4% and the lowest efficiency value was obtained at 2 blades with a wind speed of 3 m/s 6, 4 %.
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Aklis, N., Syafi’i, H., Prastiko, Y. C., & Sukmana, B. M. (2016). Studi Eksperimen Pengaruh Sudut Pitch Terhadap Performa Turbin Angin Darrieus-H Sumbu Vertikal Naca 0012. Media Mesin: Majalah Teknik Mesin, 17(2), 6–12. https://doi.org/10.23917/mesin.v17i2.2878
Arifin, F., Arnoldi, D., Sundari, E., Putri, F., Agasa, F., Ramadhan, Y., Susetyo, G., & Herlambang, Y. D. (2020). Studi analisis simulasi kekuatan beban pada alat bantu pembuatan lubang dengan sudut kemiringan 45 derajat. Jurnal Polimesin, 18(2), 116–123.
Dharma, U. S., & Masherni, M. (2017). Pengaruh Desain Sudu Terhadap Unjuk Kerja Prototype Turbin Angin Vertical Axis Savonius. Turbo : Jurnal Program Studi Teknik Mesin, 5(2), 138–148. https://doi.org/10.24127/trb.v5i2.246
Fachrudin, A. R. (2018). Pengaruh Jumlah Sudu Terhadap Kinerja Turbin Angin Sumbu Vertikal Tipe Darrieus-H Naca 3412 Dengan Sudut Pitch 00. Info-Teknik, 19(2), 195. https://doi.org/10.20527/jit.v19i2.153
Garmana, A., Arifin, F., & Rusdianasari. (2021). CFD Analysis for Combination Savonius and Darrieus Turbine with Differences in the Number of Savonius Turbine Blades. AIMS 2021 - International Conference on Artificial Intelligence and Mechatronics Systems, 1–5. https://doi.org/10.1109/AIMS52415.2021.9466009
Hariska, M. D., & Usman, M. (2021). Perencanaan Lampu Penerangan Jalan Menggunakan Turbin Angin Sumbu Vertikal Savonius. NiCMa: National Conference Multidisplinary, 1(1), 198–207.
Herraprastanti, E. H., Mubarok, M. ., Sarip, & Suryanto, H. (2020). Uji Eksperimental Pengaruh Panjang Chord Sudu Terhadap Kinerja Turbin Angin Sumbu Vertikal. Jurnal Teknik Mesin, 13(2), 38–45. https://ejournal2.pnp.ac.id/index.php/jtm
Homzah, O. F., Sundari, E., Sampurno, R. D., Utami, O. M., & Rahmawati, L. (2023). Studi Performasi Sudu Turbin Angin Savonius Tipe Vertical Axis Berbahan Komposit. Machine : Jurnal Teknik Mesin, 9(1), 30–36. https://doi.org/10.33019/jm.v9i1.3317
Kusumanto, R., Arifin, F., R. S., C., Septrianto, D., Rusdianasari, Fauzi, R., & Herlambang, Y. D. (2022). Study Combination Vertical Wind Turbine in The Mining Area. International Journal of Research in Vocational Studies (IJRVOCAS), 2(1), 01–04. https://doi.org/10.53893/ijrvocas.v2i1.96
Maulana, Ade Putra; Putri, Fenoria; Arifin, F. (2022). Analisa Fatigua Menggunakan Autodesk Inventor. Jurnal Teknologi Terapan, 3(1), 17–22.
Maulana, A. P., Arifin, F., Engineering, R. E., Sriwijaya, P. N., Sriwijaya, P. N., & Sriwijaya, P. N. (2023). Jurnal Polimesin. 311–317.
Nasution, G. G., & Dzaky, M. I. (2023). Rancangan pemanfaatan energi baru terbarukan sebagai sumber energi di desa kelapa patih jaya provinsi riau. Machinery Jurnal Teknologi Terapan, 4(1), 21–27.
Suanggana, D. (2021). Analisis Jumlah dan Sudut Blade terhadap Kecepatan dan Tekanan Turbin Air Savonius dengan Metode CFD. JTM-ITI (Jurnal Teknik Mesin ITI), 5(3), 119. https://doi.org/10.31543/jtm.v5i3.624
Susandi, A., Arifin, F., & RD Kusumanto. (2021). Simulation of Diffuser Parameters in the Performance of Horizontal Axis Wind Turbine using Computational Fluid Dynamics. Engineering & Technology, 63(06), 7739–7749.
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