Journal of Engineering and Applied Sciences

Year: 2019
Volume: 14
Issue: 24
Page No. 9788 - 9805

Experimental and Numerical Investigation of the Influence of Blade Geometries and Blade Number on the Performance of a Newly Developed Savonius-Style Wind Rotor

Authors : Youssef Kassem, Ali Sefik, Hüseyin Çamur and Abdulmajid A. Bahroun

References

Abraham, J.P., B.D. Plourde, G.S. Mowry, W.J. Minkowycz and E.M. Sparrow, 2012. Summary of Savonius wind turbine development and future applications for small-scale power generation. J. Renewable Sustainable Energy, Vol. 4, 10.1063/1.4747822

Afungchui, D., B. Kamoun, A. Helali and A.B. Djemaa, 2010. The unsteady pressure field and the aerodynamic performances of a Savonius rotor based on the discrete vortex method. Renewable Energy, 35: 307-313.
CrossRef  |  Direct Link  |  

Akwa, J.V., G.A.D.S. Junior and A.P. Petry, 2012. Discussion on the verification of the overlap ratio influence on performance coefficients of a Savonius wind rotor using computational fluid dynamics. Renewable Energy, 38: 141-149.
CrossRef  |  Direct Link  |  

Akwa, J.V., H.A. Vielmo and A.P. Petry, 2012. A review on the performance of Savonius wind turbines. Renewable Sustainable Energy Rev., 16: 3054-3064.
CrossRef  |  Direct Link  |  

Ammar, M., W. Chtourou, Z. Driss and M.S. Abid, 2011. Numerical investigation of turbulent flow generated in baffled stirred vessels equipped with three different turbines in one and two-stage system. Energy, 36: 5081-5093.
CrossRef  |  Direct Link  |  

Balduzzi, F., A. Bianchini, E.A. Carnevale, L. Ferrari and S. Magnani, 2012. Feasibility analysis of a Darrieus vertical-axis wind turbine installation in the rooftop of a building. Appl. Energy, 97: 921-929.
CrossRef  |  Direct Link  |  

Chen, J, J. Kumbernuss, L. Zhang, L. Lu and H. Yang, 2012. Influence of phase-shift and overlap ratio on Savonius wind turbine's performance. J. Solar Energy Eng., Vol. 134, No. 1. 10.1115/1.4004980

Chong, W.T., A. Fazlizan, S.C. Poh, K.C. Pan, W.P. Hew and F.B. Hsiao, 2013. The design, simulation and testing of an urban vertical axis wind turbine with the omni-direction-guide-vane. Appl. Energy, 112: 601-609.
CrossRef  |  Direct Link  |  

Chong, W.T., S.C. Poh, A. Fazlizan, S.Y. Yip, C.K. Chang and W.P. Hew, 2013. Early development of an energy recovery wind turbine generator for exhaust air system. Appl. Energy, 112: 568-575.
CrossRef  |  Direct Link  |  

Danao, L.A., O. Eboibi and R. Howell, 2013. An experimental investigation into the influence of unsteady wind on the performance of a vertical axis wind turbine. Appl. Energy, 107: 403-411.
CrossRef  |  Direct Link  |  

Driss, Z., A. Damak and M.S. Abid, 2015. Evaluation of the Savonius wind rotor performance for different external overlap ratios. Intl. J. Fluid Mech. Therm. Sci., 1: 14-21.
Direct Link  |  

Driss, Z., G. Bouzgarrou, W. Chtourou, H. Kchaou and M.S. Abid, 2010. Computational studies of the pitched blade turbines design effect on the stirred tank flow characteristics. Eur. J. Mechanics-B/Fluids, 29: 236-245.
CrossRef  |  

Driss, Z., O. Mlayeh, D. Driss, M. Maaloul and M.S. Abid, 2014. Numerical simulation and experimental validation of the turbulent flow around a small incurved Savonius wind rotor. Energy, 74: 506-517.
CrossRef  |  Direct Link  |  

Driss, Z., O. Mlayeh, S. Driss, D. Driss, M. Maaloul and M.S. Abid, 2015. Study of the bucket design effect on the turbulent flow around unconventional Savonius wind rotors. Energy, 89: 708-729.
CrossRef  |  Direct Link  |  

Driss, Z., S. Karray, H. Kchaou and M.S. Abid, 2011. CFD simulation of the laminar flow in stirred tanks generated by double helical ribbons and double helical screw ribbons impellers. Open Eng., 1: 413-422.
CrossRef  |  Direct Link  |  

Emmanuel, B. and W. Jun, 2011. Numerical study of a six-bladed Savonius wind turbine. J. Sol. Energy Eng., 133: 1-5.
CrossRef  |  Direct Link  |  

Frikha, S., Z. Driss and M.A. Hagui, 2015. Computational study of the diffuser angle effect in the design of a waste heat recovery system for oil field cabins. Energy, 84: 219-238.
CrossRef  |  Direct Link  |  

Gipe, P., 2004. Wind Power: Renewable Energy for Home, Farm and Business. 2nd Edn., Chelsea Green Publishing, Vermont, USA., ISBN:9781603581639,.

Golecha, K., T.I. Eldho and S.V. Prabhu, 2011. Influence of the deflector plate on the performance of modified Savonius water turbine. J. Applied Energy, 88: 3207-3217.
CrossRef  |  Direct Link  |  

Goodarzi, M. and R. Keimanesh, 2015. Numerical analysis on overall performance of Savonius turbines adjacent to a natural draft cooling tower. Energy Convers. Manage., 99: 41-49.
CrossRef  |  Direct Link  |  

Gupta, R. and A. Biswas, 2011. CFD analysis of flow Physics and aerodynamic performance of a combined three-bucket Savonius and three-bladed Darrieus turbine. Intl. J. Green Energy, 8: 209-233.
CrossRef  |  Direct Link  |  

Gupta, R., A. Biswas and K.K. Sharma, 2008. Comparative study of a three-bucket Savonius rotor with a combined three-bucket Savonius-three-bladed Darrieus rotor. Renewable Energy, 33: 1974-1981.
CrossRef  |  Direct Link  |  

Irabu, K. and J.N. Roy, 2011. Study of direct force measurement and characteristics on blades of Savonius rotor at static state. Exp. Therm. Fluid Sci., 35: 653-659.
CrossRef  |  Direct Link  |  

Kacprzak, K., G. Liskiewicz and K. Sobczak, 2013. Numerical investigation of conventional and modified Savonius wind turbines. Renewable Energy, 60: 578-585.
CrossRef  |  Direct Link  |  

Kamoji, M.A., S.B. Kedare and S.V. Prabhu, 2009. Experimental investigations on single stage modified Savonius rotor. Appl. Energy, 86: 1064-1073.
CrossRef  |  Direct Link  |  

Kamoji, M.A., S.B. Kedare and S.V. Prabhu, 2009. Performance tests on helical Savonius rotors. Renewable Energy, 34: 521-529.
CrossRef  |  Direct Link  |  

Kang, C., H. Liu and X. Yang, 2014. Review of fluid dynamics aspects of Savonius-rotor-based vertical-axis wind rotors. Renewable Sustainable Energy Rev., 33: 499-508.
CrossRef  |  Direct Link  |  

Kianifar, A. and M. Anbarsooz, 2011. Blade curve influences on the performance of Savonius rotors: Experimental and numerical. Proc. Inst. Mech. Eng. Part A. J. Power Energy, 225: 343-350.
CrossRef  |  Direct Link  |  

Kianifar, A., M. Anbarsooz and M. Javadi, 2010. Blade curve influences on performance of savonius rotors: Experimental and numerical. Proceedings of the ASME 2010 3rd Joint US-European Fluids Engineering Summer Meeting Symposia-Parts A, B and C., August 1-5, 2010, American Society of Mechanical Engineers (ASME), Montreal, Quebec, Canada, ISBN:978-0-7918-4948-4, pp: 905-91.

Kurt, E., H. Gor and M. Demirtas, 2014. Theoretical and experimental analyses of a single phase Permanent Magnet Generator (PMG) with multiple cores having axial and radial directed fluxes. Energy Convers. Manage., 77: 163-172.
CrossRef  |  Direct Link  |  

Lam, C.K.G. and K. Bremhorst, 1981. A modified form of the k-ε model for predicting wall turbulence. J. Fluids Eng., 103: 456-460.
CrossRef  |  Direct Link  |  

Lee, J.H., Y.T. Lee and H.C. Lim, 2016. Effect of twist angle on the performance of Savonius wind turbine. Renewable Energy, 89: 231-244.
CrossRef  |  Direct Link  |  

Lin, C.H. and L.A. Klimina, 2014. CFD simulation and analysis for Savonius rotors with different blade configuration. AIP. Conf. Proc., 1637: 575-581.
CrossRef  |  Direct Link  |  

Mahmoud, N.H., A.A. El-Haroun, E. Wahba and M.H. Nasef, 2012. An experimental study on improvement of Savonius rotor performance. Alexandria Eng. J., 51: 19-25.
CrossRef  |  Direct Link  |  

Menet, J.L., 2004. A double-step Savonius rotor for local production of electricity: A design study. Renewable Energy, 29: 1843-1862.
CrossRef  |  Direct Link  |  

Mohamed, M.H., G. Janiga, E. Pap and D. Thevenin, 2010. Optimization of Savonius turbines using an obstacle shielding the returning blade. Renewable Energy, 35: 2618-2626.
CrossRef  |  Direct Link  |  

Mohamed, M.H., G. Janiga, E. Pap and D. Thevenin, 2011. Optimal blade shape of a modified Savonius turbine using an obstacle shielding the returning blade. Energy Convers. Manage., 52: 236-242.
CrossRef  |  Direct Link  |  

Morbiato, T., C. Borri and R. Vitaliani, 2014. Wind energy harvesting from transport systems: A resource estimation assessment. Appl. Energy, 133: 152-168.
CrossRef  |  Direct Link  |  

Morshed, K.N., M. Rahman, G. Molina and M. Ahmed, 2013. Wind tunnel testing and numerical simulation on aerodynamic performance of a three-bladed Savonius wind turbine. Intl. J. Energy Environ. Eng., 4: 1-14.
CrossRef  |  Direct Link  |  

Nasef, M.H., W.A. El-Askary, A.A. Abdel-Hamid and H.E. Gad, 2013. Evaluation of Savonius rotor performance: Static and dynamic studies. J. Wind Eng. Ind. Aerodyn., 123: 1-11.
CrossRef  |  Direct Link  |  

Nasef, M.H., W.A. El-Askary, A.A. Abdel-Hamid and H.E. Gad, 2013. Evaluation of Savonius rotor performance: Static and dynamic studies. J. Wind Eng. Ind. Aerodyn., 123: 1-11.
CrossRef  |  Direct Link  |  

Obara, S., Y. Morizane and J. Morel, 2013. Study on method of electricity and heat storage planning based on energy demand and tidal flow velocity forecasts for a tidal microgrid. Appl. Energy, 111: 358-373.
CrossRef  |  Direct Link  |  

Rolland, S., W. Newton, A.J. Williams, T.N. Croft, D.T. Gethin and M. Cross, 2013. Simulations technique for the design of a vertical axis wind turbine device with experimental validation. Appl. Energy, 111: 1195-1203.
CrossRef  |  Direct Link  |  

Rolland, S.A., M. Thatcher, W. Newton, A.J. Williams, T.N. Croft, D.T. Gethin and M. Cross, 2013. Benchmark experiments for simulations of a vertical axis wind turbine. Appl. Energy, 111: 1183-1194.
CrossRef  |  Direct Link  |  

Roy, S. and A. Ducoin, 2016. Unsteady analysis on the instantaneous forces and moment arms acting on a novel Savonius-style wind turbine. Energy Convers. Manage., 121: 281-296.
CrossRef  |  Direct Link  |  

Roy, S. and U.K. Saha, 2013. Review of experimental investigations into the design, performance and optimization of the Savonius rotor. Proc. Inst. Mech. Eng. Part A. J. Power Energy, 227: 528-542.
CrossRef  |  Direct Link  |  

Roy, S. and U.K. Saha, 2013. Review on the numerical investigations into the design and development of Savonius wind rotors. Renewable Sustainable Energy Rev., 24: 73-83.
CrossRef  |  Direct Link  |  

Roy, S. and U.K. Saha, 2013. Review on the numerical investigations into the design and development of Savonius wind rotors. Renewable Sustainable Energy Rev., 24: 73-83.
CrossRef  |  Direct Link  |  

Roy, S. and U.K. Saha, 2015. Wind tunnel experiments of a newly developed two-bladed Savonius-style wind turbine. Appl. Energy, 137: 117-125.
CrossRef  |  Direct Link  |  

Roy, S. and U.K. Saha, 2015. Wind tunnel experiments of a newly developed two-bladed Savonius-style wind turbine. Appl. Energy, 137: 117-125.
CrossRef  |  Direct Link  |  

Saeidi, D., A. Sedaghat, P. Alamdari and A.A. Alemrajabi, 2013. Aerodynamic design and economical evaluation of site specific small vertical axis wind turbines. Appl. Energy, 101: 765-775.
CrossRef  |  Direct Link  |  

Saha, U.K., S. Thotla and D. Maity, 2008. Optimum design configuration of Savonius rotor through wind tunnel experiments. J. Wind Eng. Ind. Aerodyn., 96: 1359-1375.
CrossRef  |  Direct Link  |  

Sharma, S. and R.K. Sharma, 2016. Performance improvement of Savonius rotor using multiple quarter blades-A CFD investigation. Energy Convers. Manage., 127: 43-54.
CrossRef  |  Direct Link  |  

Sheldahl, R.E., L.V. Feltz and B.F. Blackwell, 1978. Wind tunnel performance data for two-and three-bucket Savonius rotors. J. Energy, 2: 160-164.
CrossRef  |  Direct Link  |  

Tartuferi, M., V. D'Alessandro, S. Montelpare and R. Ricci, 2015. Enhancement of Savonius wind rotor aerodynamic performance: A computational study of new blade shapes and curtain systems. Energy, 79: 371-384.
CrossRef  |  Direct Link  |  

Uzun, Y., S. Demirbas and E. Kurt, 2014. Implementation of a new contactless piezoelectric wind energy harvester to a wireless weather station. Electron. Electr. Eng., 20: 35-39.
CrossRef  |  Direct Link  |  

Wenehenubun, F., A. Saputra and H. Sutanto, 2015. An experimental study on the performance of Savonius wind turbines related with the number of blades. Energy Procedia, 68: 297-304.
CrossRef  |  Direct Link  |  

Zhao, Z., Y. Zheng, X. Xu, W. Liu and G. Hu, 2009. Research on the improvement of the performance of Savonius rotor based on numerical study. Proceedings of the 2009 International Conference on Sustainable Power Generation and Supply, April 6-7, 2009, IEEE, Nanjing, China, ISBN:978-1-4244-4934-7, pp: 1-6.

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved