The Investigation of Savonius Type and Darrieus H Type Wind Turbine Simulation with Wind Speed Variable

Authors

  • Wibby Aditya Putra Utama Politeknik Negeri Sriwijaya
  • Yohandri Bow Politeknik Negeri Sriwijaya
  • M. Syahirman Yusi Politeknik Negeri Sriwijaya

DOI:

https://doi.org/10.53893/ijrvocas.v1i2.18

Keywords:

Wind, Renewable, Energy, Savonius, Turbine

Abstract

The demand for electrical energy that continues to increase along with the advancement of civilization and also the increasing number of people as well as the reduced level of fulfillment and availability of non-renewable energy sources, it is necessary to have renewable energy resources that capable of fulfill these energy demand in a more environmental friendly. One of the natural energies that we can use is wind energy, which is easy to get and lasts continuously. This research examines the comparison of the power generated from the vertical axis wind turbine savonius type and darrieus H type. The wind that use in this research get from from the fan. The test is doing by varying the wind speed by adjusting the fan speed. The fan is directed to the wind turbine to rotate the wind turbine. To measure the wind speed produced by the fan, a digital anemometer is used. The result of this research is the relation data of voltage to rpm and voltage to wind speed of wind turbine.

References

R. Ploetz, Rusdianasari, and Eviliana, “Renewable Energy: Advantages and Disadvantages,” Proceeding Forum Res. Sci. Technol. 2016, vol. Vol. 3, no. Issue 1, pp. 1–4, 2016.

A. Kurniawan, A. Taqwa, and Y. Bow, “PLC Application as an Automatic Transfer Switch for on-grid PV System; Case Study Jakabaring Solar Power Plant Palembang,” J. Phys. Conf. Ser., vol. 1167, no. 1, 2019, doi: 10.1088/1742-6596/1167/1/012026.

Marco Casini, “Small Vertical Axis Wind Turbines for Energy Efficiency of Buildings,” J. Clean Energy Technol., vol. 4, no. 1, pp. 56–65, 2015, doi: 10.7763/jocet.2016.v4.254.

Y. Bow, L. Kalsum, A. Hasan, A. Husaini and Rusdianasari, “The Purification of Biogas with Monoethanolamine ( MEA ) Solution Based on Biogas Flow Rate,” ” Proceedings of the 4th Forum in Research, Science, and Technology (FIRST-T1-T2-2020), vol. 7, pp. 12–17, 2021.

Rusdianasari, A. Syarif, M. Yerizam, M. S. Yusi, L. Kalsum, and Y. Bow, “Effect of Catalysts on the Quality of Biodiesel from Waste Cooking Oil by Induction Heating,” J. Phys. Conf. Ser., vol. 1500, no. 1, 2020, doi: 10.1088/1742-6596/1500/1/012052.

A. Susandi, F. Arifin, and Rusdianasari, “ Simulation of Diffuser Parameters in the Performance of Horizontal Axis Wind Turbine using Computational Fluid Dynamics”, Technology Reports of Kansai University, Vol. 63(06), 2021.

A. Taqwa, Rusdianasari, Budiman, R. D. Kusumato, and T. Dewi, “Synchronization and Application of IoT for on Grid Hybrid PV-Wind System,” Proc. - 2018 Int. Conf. Appl. Sci. Technol. iCAST 2018, no. 2, pp. 617–621, 2018, doi: 10.1109/iCAST1.2018.8751532.

R.B. Yuliandi, Rusdianasari, and T.Dewi, “Comparison of Blade Dimension Design of a Vertical Wind Turbine Applied in Low Wind Speed,” E3S Web Conf., vol. 68, pp. 1–6, 2018, doi: 10.1051/e3sconf/20186801001.

Md Mehedi Hasan, “Design and Performance Analysis of Small Scale Horizontal Axis Wind Turbine for Nano Grid Application,” 2017, [Online]. Available: https://digitalcommons.georgiasouthern.edu/etd/1605.

Bavin Loganathan, Harun Chowdhury, Israt Mustary, Md Masud Rana, and Firoz Alam, “Design of a micro wind turbine and its economic feasibility study for residental power generation in built-up areas,” Energy Procedia, vol. 160, no. 2018, pp. 812–819, 2019, doi: 10.1016/j.egypro.2019.02.153.

A. Maideen Abdhulkader Jeylani, A. Mahaboob, G. Radhakrishnan, and K. Rameshkumar, “Design and Anaysis of Small- Scale Wind Turbine,” Int. J. Pure Appl. Math., vol. 119, no. 12, pp. 1817–1828, 2018.

Deibanehbok Nongdhar, Bikramjit Goswami, Pallav Gogoi, and Sidharth Borkataky, “Design of Horizontal Axis Micro Wind Turbine for Low Wind Speed Areas,” ADBU J. Electr. Electron. Eng., vol. 2, no. 2, pp. 39–47, 2018, [Online]. Available: www.tinyurl.com/ajeee-adbu.

Deibanehbok Nongdhar and Bikramjit Goswami, “Design of Micro Wind Turbine for Low Wind Speed Areas: A Review,” ADBU J. Electr. Electron. Eng., vol. 2, no. 2, pp. 39–47, 2018, [Online]. Available: www.tinyurl.com/ajeee-adbu.

Zheng Li, Ruihua Han, Peifeng Gao, and Caisheng Wang, “Analysis and implementation of a drag-type vertical-axis wind turbine for small distributed wind energy systems,” Adv. Mech. Eng., vol. 11, no. 1, pp. 1–16, 2019, doi: 10.1177/1687814019825709.

B. Rapelli, Rajnikant T Suryavanshi, Mahesh L Shelke, Shweta G Patil and Pratik Tikar, “Design and Development of Foldable and Portable Windmill,” pp. 3084–3094, 2017.

N. A. Nader and A. Jendoubi, “Study of a vertical axis wind turbine for low speed regions in Saudi Arabia,” Int. Conf. Fluid Flow, Heat Mass Transf., no. 139, p. 139, 2018, doi: 10.11159/ffhmt18.139.

P. Pathike, T. Katpradit, P. Terdtoon, and P. Sakulchangsatjatai, “Small horizontal-axis wind turbine blade for low wind speed operation,” J. Appl. Sci. Eng., vol. 16, no. 4, pp. 345–351, 2013, doi: 10.6180/jase.2013.16.4.02.

Ozkar F. Homzah, Tri Widagdo, Mardiana Ibnu, and Asrofi Destra, “Prototype of Small Savonius Wind Turbine,” vol. 7, pp. 208–213, 2021.

Vicky K. Rathod and Prof.S.Y Kamdi, “Design & Fabrication of PVC Bladed Inexpensive Wind Turbine,” IOSR J. Mech. Civ. Eng., vol. 11, no. 4, pp. 114–119, 2014, doi: 10.9790/1684-1142114119.

Josué Njock Libii and David M. Drahozal, “Use of a miniature wind turbine with rectangular blades to demonstrate and confirm the existence of optimal angles of inclination of turbine blades at which peak power is produced,” World Trans. Eng. Technol. Educ., vol. 10, no. 1, pp. 35–40, 2012.

Y. Bow, A. Syakdani, M. Taufik, and Rusdianasari, “Effect of Drying Ariflow Rate on H2O Mass Evaporated on Banana Chips Drying using Photovoltaic Solar Panel”, J. Phys.: Conf. Ser. 1500 012015, 2020.

N. Pasaribu, Rusdianasari, and A. Syarif, “Efficiency of 9Kwp Sun Tracking Photovoltaic in Palembang, Indonesia”, IOP Conf. Ser.: Earth Environ. Sci. 347 012129, 2019.

H. Wibowo, Y. Bow, and CR. Sitompul, “Performance Comparison Analysis of Fixed and Solar-Tracker Installed Panel at PV System”, IOP Conf. Ser.: Earth Environ. Sci. 709 012003, 2021.

A. Garmana, F. Arifin, and Rusdianasari, “CFD Analysis for Combination Savonius and Darrieus Turbine with Differences in the Number of Savonius Turbine Blades”, 2021 International Conference on Artificial Intelligence and Mechatronics System (AIMS), IEEE, 2021.

Mirdiansyah, A. Taqwa, Y. Bow. “Monitoring Depth of Discharge of a Valve Regulated Lead Acid Battery in a Standalone PV System,” Proceedings of the 4th Forum in Research, Science, and Technology (FIRST-T1-T2-2020), 2021.

Y Bow, T Dewi, A Taqwa, Rusdianasari, Zulkarnain, “Power Transistor 2N3055 as a Solar Cell Device,” International Conference on Electrical Engineering and Computer Science (ICECOS), IEEE, 2018.

A. Taqwa, R. Rusdianasari, Budiman, RD. Kusumanto, T. Dewi, “Synchronization and application of IoT for on grid hybrid PV-wind system,” International Conference on Applied Science and Technology (iCAST) IEEE 617-621, 2018.

S Widodo, A Taqwa and R Rusdianasari, “Solar panels output optimization using Phase Change Material (PCM) and heatsink applied in open-pit mining,” IOP Conf. Series: Materials Science and Engineering 1073 (2021) 012041, 2021.

C. Sovanara, F. Firdaus, R. Rusdianasari, “A Review on environmental impact of wind energy,” in Proceeding Forum in Research, Science, and Technology (FIRST), 2016.

Y. Bow, E. Effendi, A. Taqwa, G. Rinditya, M.Y. Pratama, and Rusdianasari, "Analysis of Air Fuel Ratio on Combustion Flames of Mixture Waste Cooking Oil and Diesel using Preheating Method", IOP Conf. Ser.: Earth Environ. Sci. 709 012004, 2021.

Additional Files

Published

2021-09-02

How to Cite

Utama, W. A. P. ., Bow, Y. ., & Yusi, M. S. . (2021). The Investigation of Savonius Type and Darrieus H Type Wind Turbine Simulation with Wind Speed Variable. International Journal of Research in Vocational Studies (IJRVOCAS), 1(2), 19–26. https://doi.org/10.53893/ijrvocas.v1i2.18

Most read articles by the same author(s)