The Design and Fabrication of Waterwheels with System Floating Pontoon

Authors

  • Fatahul Arifin Politeknik Negeri Sriwijaya
  • Hadi Sutanto Atma Jaya Catholic University
  • Isdaryanto Iskandar Atma Jaya Catholic University
  • Ronald Sukwadi Atma Jaya Catholic University

DOI:

https://doi.org/10.53893/ijrvocas.v2i3.143

Keywords:

fossil energy, renewable energy, water wheel , generator

Abstract

The use of fossil energy is currently starting to be slightly reduced by the government, and at this time the government is also starting to look at renewable energy as alternative energy, just as energy, solar, wind, biomass, and water. One of the utilization of water energy for the use of electrical energy is with a waterwheel. In this study, a pontoon-type water wheel was designed, where the ratio of rotation of the wheel to the rotation of the generator rotor was 1: 4. The dimensions of the water wheel designed and made were with a pontoon width of 1080 mm x 2000 mm x 15 mm, and the diameter of the water wheel is 1200 mm, which can be generated by a generator of 1 kW.

References

Kamal, M., Arifin, F., & Rusdianasari. (2021). Analysis of the Performance of the Four-Blade Darrieus Wind Turbine at the Jamik Bukit Asam Mosque Complex Tanjung Enim South Sumatra: Analysis of the Performance of The Four-Blade Darrieus Wind Turbine at the Jamik Bukit Asam Mosque Complex Tanjung Enim South Sumatra. International Journal of Research in Vocational Studies (IJRVOCAS), 1(2), 45–51. https://doi.org/10.53893/ijrvocas.v1i2.52

Astanto, I., Arifin, F., Bow, Y., & Sirajuddin. (2022). Study of Effect Changing the Blade Shape and Lift Angles on Horizontal Wind Turbine. International Journal of Research in Vocational Studies (IJRVOCAS), 2(1), 33–37. https://doi.org/10.53893/ijrvocas.v2i1.92

Centofanti M., Brusaporci S., Donato A. D., Lucchese V., (2013), Architectures and mechanisms. Water mills for cereal grinding and copper processing, IFToMM Workshop on Historyof MMS-Palermo

Franco W., Ferraresi C. Ravelli R., (2019), Functional Analysis of Piedmont (Italy) Ancient Water Mills Aimed at Their Recovery or Reconversion, Journal Machine, MDPI, Vol. 7, 32, doi:10.3390/machines7020032

Angelakis, A. N. et al., (2022), Sustainable and Regenerative Development of Water Mills as an Example of Agricultural Technologies for Small Farms, Journal Water, MDPI, pp. 1-27, https://doi.org/10.3390/w14101621

Patty, O.F., 1995, Hidro Power, Erlangga, Jakarta

Quaranta E., Ravelli R., 2018 Gravity water wheels as a micro hydropower energy source: A review based on historic data, design methods, efficiencies and modern optimizations, Journal Renewable and Sustainable Energy Review, 97, pp 414-427, https://doi.orag/10.1016/j.rser.2018.08.033

Yahya, & Gunawan, I. (2022). Design of JIB Crane 600 kg Electric Powered. International Journal of Research in Vocational Studies (IJRVOCAS), 1(4), 37–40. https://doi.org/10.53893/ijrvocas.v1i4.76

Novarika, W., Arifin, F. ., Satria Martomi, E., Gunawan, I. ., & Perdana, F. R. . (2021). Design Manufacture of Fixture Fire Fighter Kit. International Journal of Research in Vocational Studies (IJRVOCAS), 1(3), 08–16. https://doi.org/10.53893/ijrvocas.v1i3.58

Siswantara A.I., Syafei M.H.G., Budiyanto M.A., Pujowidodo H, Widiawaty C.D., and. Ramdlan Gunadi G.G, (2021), Design Procedure of Archimedes Hydro Turbine, Journal of Southwest Jiaotong University, vol. 56, no. 6, DOI:10.35741/issn.0258-2724.56.6.28

Vasandani, V.P., 1984, Hidraulika Machines Theory and Design, Khanna Publishers, Delhi.

Quaranta E., Ravelli R., (2015), Output power and power losses estimation for an overshot water wheel, , Journal Renewable and Sustainable Energy Review, 83, pp 979-987, https://doi.org/10.1016/j.renene.2015.05.018

Mereke N. B., (2015), Highly Efficient Cross flow Turbine Runner Design for Upgrading Traditional Water Mill in to Micro Hydro Power Plant, International Journalof Engineeering Research & Technology (IJERT), Vol. 4, 12, pp. 71-74

Shingala A., Cleynen O., Jain A., Hoerner S. and Thévenin D., 2022, Genetic Optimisation of a Free-Stream Water Wheel Using 2D Computational Fluid Dynamics Simulations Points towards Design with Fully Immersed Blades, Journal Energies, MDPI, https://doi.org/10.3390/en15103723

Wahyudi, B. Faizin A., Suparman S., 2013, Increasing efficiency of overshot waterwheel with overflow keeper double nozzle, Appl Mech Mater 330.

Mill Water Park and Resevoir, Education Pack, How water wheels powered the mills, millwaters.org.uk, pp.1-17

Additional Files

Published

2022-12-15

How to Cite

Arifin, F. ., Sutanto, H. ., Iskandar, I. ., & Sukwadi, R. . (2022). The Design and Fabrication of Waterwheels with System Floating Pontoon. International Journal of Research in Vocational Studies (IJRVOCAS), 2(3), 01–06. https://doi.org/10.53893/ijrvocas.v2i3.143

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