Development of Savonius Rotor Based on Bezier Curve for Vertical Axis Marine Current Turbine at Sunda Strait, Hindia Ocean

Article Preview

Abstract:

Due to its strategic location and ocean currents, the Sunda Strait has the potential to produce energy that might be used as a source of electricity. As a result, this strait area urgently needs a suitable turbine design. This strait's most significant sea current speed is 1 (one) m/s. The Savonius rotor is one of the rotor kinds of turbines that can operate in the slow sea current—modifying the rotor from semi-circular to use the Bezier curve for the shape to optimize the performance. This paper will discuss the design of the Savonius rotor using the Bezier curve, that have improved performance. The rotor with double stacking will also enhance the performance of the rotor. This design is a novelty for vertical marine current turbine applications in ocean renewable energy.

You have full access to the following eBook
You might also be interested in these eBooks

Info:

Periodical:

Pages:

69-74

Citation:

Online since:

June 2024

Export:

Share:

Citation:

* - Corresponding Author

[1] Orhan, K., Mayerle, R., Narayanan, R., & Pandoe, W., Investigation of the energy potential from tidal stream currents in Indonesia, 2016.

DOI: 10.9753/icce.v35.management.10

Google Scholar

[2] Orhan, K., Mayerle, R., Mayer, B. About the Influence of Density-Induced Flow on Tidal Stream Power Generation in the Sunda Strait, Indonesia. 2019.

DOI: 10.3850/38wc092019-1725

Google Scholar

[3] DT Suprayogi, A Sudrajad, MP Pinem, Y Yusuf, Development of Vertical Axis Marine Current Turbine for Sunda Strait Application, Trends in Mechanical Engineering Research (TiMER), 2023.

Google Scholar

[4] Islam, M, et al. Aerodynamic models for Darrieus-type straight-bladed vertical axis wind turbines. Renewable and Sustainable Energy Reviews. 2008. Vol (12): pp.1087-1109.

DOI: 10.1016/j.rser.2006.10.023

Google Scholar

[5] Sasongko, Herman, et al. "Numerical Approach of The Blade Shape and Number on The Performance of Multiple Blade Closed Type Impulse Wind Turbine." International Journal of Mechanical Engineering Technologies and Applications, 2023, 4.2: 220-235.

DOI: 10.21776/mechta.2023.004.02.11

Google Scholar

[6] Menet, J-L. A double-step Savonius rotor for local production of electricity: a design study. Renewable Energy. 2004. Vol (29): pp.1843-1862.

DOI: 10.1016/j.renene.2004.02.011

Google Scholar

[7] Gupta R, et al. Comparative study of three-bucket Savonius rotor with a combined three-bucket Savonius – three bladed Darrieus rotor. Renewable Energy. 2008. Vol (34): pp.1974-1981.

DOI: 10.1016/j.renene.2007.12.008

Google Scholar

[8] Masdari, Mehran, et al. Optimization of airfoil Based Savonius wind turbine using coupled discrete vortex method and salp swarm algorithm. Journal of Cleaner Production, 2019, 222: 47-56.

DOI: 10.1016/j.jclepro.2019.02.237

Google Scholar

[9] Rengma, Thochi Seb; Gupta, Mahendra Kumar; Subbarao, P. M. V. A novel method of optimizing the Savonius hydrokinetic turbine blades using Bezier curve. Renewable Energy, 2023, 216: 119091.

DOI: 10.1016/j.renene.2023.119091

Google Scholar

[10] Putranto, Antonius Hadi Sudono; Djanali, Vivien Suphandani; Dwiyantoro, Bambang Arip. Numerical Study of Savonius Wind Turbine Rotor with Elliptic Angle Shape Variation. The International Journal of Mechanical Engineering and Sciences, 2019, 3.2: 44-53.

DOI: 10.12962/j25807471.v3i2.9367

Google Scholar

[11] Yoshida, Yuka; Kawamura, Tetuya. Numerical simulations of two-dimensional flows around a Savonius rotor with various curvature of the blade. お茶の水女子大學自然科學報告, 2012, 63.1: 11-21.

Google Scholar

[12] Díaz, Argemiro Palencia; Pajaro, Giovanni Jiménez; Salas, Khriscia Utria. Computational model of Savonius turbine. Ingeniare. Revista chilena de ingeniería, 2015, 23.3: 406-412.

DOI: 10.4067/s0718-33052015000300009

Google Scholar

[13] Alit, I. B.; NurchayatI, Nurchayati; PamujI, S. H. Turbin angin poros vertikal tipe Savonius bertingkat dengan variasi posisi sudut. Dinamika Teknik Mesin, 2016, 6-2.

DOI: 10.29303/d.v6i2.13

Google Scholar

[14] Dedy Triawan Suprayogi, Savonius rotor vertical axis marine current turbine for renewable energy application, Thesis Universiti Teknologi Malaysia, 2010.

DOI: 10.3940/rina.mre.2008.10

Google Scholar

[15] Nakajima, Miyoshi et al. "Performance of Double-step Savonius Rotor for Environmentally Friendly Hydraulic Turbine." Journal of Fluid Science and Technology 3 (2008): 410-419.

DOI: 10.1299/jfst.3.410

Google Scholar

[16] Saha, Ujjwal K. et al. "Optimum design configuration of Savonius rotor through wind tunnel experiments." Journal of Wind Engineering and Industrial Aerodynamics 96 (2008): 1359-1375.

DOI: 10.1016/j.jweia.2008.03.005

Google Scholar