Peningkatan Kinerja Rotor Savonius Dengan Mengembangkan Sudu Baru Berbasis Airfoil

Rendi Rendi(1*), Budi Hartadi(2), Muhammad Firman(3), Muhammad Irfansyah(4),

(1) Universitas Islam Kalimantan
(2) Universitas Islam Kalimantan
(3) Universitas Islam Kalimantan
(4) Universitas Islam Kalimantan
(*) Corresponding Author

Abstract


The development of new and renewable energy is currently a top priority for the international community, as energy needs continue to increase while fossil fuels are running low. The Savonius rotor turbine is one of the most widely used turbines but has low efficiency. This study aims to improve the performance of the Savonius turbine by developing a new blade based on airfoil which is simulated in CFD. There are 2 blade models to be simulated, namely the RD-1 model and the RD-2 model, then the simulation results are compared with the conventional blade. The results of the study can be said that the new airfoil-based blade can improve the performance of the Savonius turbine, the increase occurs in the TSR value which is better than the conventional blade. The highest Cp is 0.148 on the RD-2 model blade with a maximum TSR of 0.8


Keywords


Savonius; simulation; airfoil

Full Text:

PDF

References


Alom, N., & Saha, U. K. (2019). Influence of blade profiles on Savonius rotor performance: Numerical simulation and experimental validation. Energy Conversion and Management, 186(October 2018), 267–277.

Arifin, J., 2019. Desain Diffuser Turbin Air Arus Sungai untuk Meningkatkan Laju Arus Sungai. Al Jazari: Jurnal Ilmiah Teknik Mesin, 4(2).

Hartadi, B., 2022. Pengaruh Kelengkungan Deflektor Turbin Savonius Modifikasi Untuk Turbin Hidrokinetik. Al Jazari: Jurnal Ilmiah Teknik Mesin, 7(1).

Hatradi, B., Irfansyah, M. and Puteri, P., 2021. Desain Underwater Rotor Untuk Memanfaatkan Laju Aliran Sungai Sebagai Pembangkit Listrik Tenaga Air. Jurnal Engine: Energi, Manufaktur, dan Material, 5(2), pp.77-82.

Jeon, K. S., Jeong, J. I., Pan, J. K., & Ryu, K. W. (2015). Effects of end plates with various shapes and sizes on helical Savonius wind turbines. Renewable Energy, 79(1), 167–176.

Kamoji, M. A., Kedare, S. B., & Prabhu, S. V. (2009). Experimental investigations on single stage modified Savonius rotor. Applied Energy, 86(7–8), 1064–1073.

Khan, N., & Energy, N. (2009). Performance of Savonius rotor as a water current turbine. April 2016.

Manganhar, A. L., Rajpar, A. H., Luhur, M. R., Samo, S. R., & Manganhar, M. (2019). Performance analysis of a savonius vertical axis wind turbine integrated with wind accelerating and guiding rotor house. Renewable Energy, 136, 512–520.

Pan, H., Li, H., Zhang, T., Laghari, A. A., Zhang, Z., Yuan, Y., & Qian, B. (2019). A portable renewable wind energy harvesting system integrated S-rotor and H-rotor for self-powered applications in high-speed railway tunnels. Energy Conversion and Management, 196(May), 56–68.

Ostos, I., Ruiz, I., Gajic, M., Gómez, W., Bonilla, A., & Collazos, C. (2019). A modified novel blade configuration proposal for a more efficient VAWT using CFD tools. Energy Conversion and Management, 180(November 2018), 733–746.

Rendi, R., Arifin, J., Mujiburrahman, M. And Trianiza, I., 2020. Potensi Pembangkit Listrik Tenaga Air Mikrohidro Di Sungai Pintab Dan Sungai Amandit Kalimantan Selatan. Jurnal Engine: Energi, Manufaktur, Dan Material, 4(2), Pp.46-52.

Rendi, R. and Herlina, F., 2019. Penambahan Lingkaran Pelindung Pada Turbin Air Rotor Savonius. INFO-TEKNIK, 20(2), pp.237-254.

Rendi, R. and Sidiq, A., 2018. Pengaruh Twist Angle Blade Turbin Savonius Berpengarah Aliran Aplikasi Pada Turbin Air. INFO-TEKNIK, 19(2), pp.203-210.

Rendi, R., 2017. Analisa Distribusi Tekanan dan Aliran Disekitar Rotor Savonius Water Turbine. AL JAZARI: JURNAL ILMIAH TEKNIK MESIN, 2(1).

Saha, U. K., Thotla, S., & Maity, D. (2008). Optimum design configuration of Savonius rotor through wind tunnel experiments. Journal of Wind Engineering and Industrial Aerodynamics, 96(8–9), 1359–1375.




DOI: https://doi.org/10.30588/jeemm.v6i2.1078

Article Metrics

Abstract view : 177 times
PDF - 5 times

Refbacks

  • There are currently no refbacks.


Copyright (c) 2022 rendi rendi

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

Creative Commons License
Jurnal Engine: Energi, Manufaktur, dan Material is licensed under a Creative Commons Attribution 4.0 International License.

Jurnal Engine: Energi, Manufaktur, dan Material has been indexed by:
              
 
 
Free counters!
 
Jurnal Engine: Energi, Manufaktur, dan Material  
Office: Soekarno Building, 2nd Floor, Jl. Proklamasi No. 1, Babarsari, Yogyakarta (55281)
Email: jurnal.engine@up45.ac.id; jeemm.up45@gmail.com
ISSN (online): 2579-7433