Abraham, J., B. Plourde, G. Mowry, W. Minkowycz and E. Sparrow (2012). Summary of savonius wind turbine development and future applications for small-scale power generation. Journal of Renewable and Sustainable Energy 4(4), 042703.##
Akwa, J. V., G. A. da Silva J nior 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(1), 141–149.##
Alexander, A. and B. Holownia (1978). Wind tunnel tests on a savonius rotor. Journal of Wind Engineering and Industrial Aerodynamics 3(4), 343–351.##
Alom, N. and U. K. Saha (2019). Influence of blade profiles on savonius rotor performance: Numerical simulation and experimental validation. Energy Conversion and Management 186, 267–277.##
Altan, B. D., M. Atılgan and A. zdamar (2008). An experimental study on improvement of a savonius rotor performance with curtaining. Experimental thermal and fluid science 32(8), 1673–1678.##
Amiri, M., M. Kahrom and A. R. Teymourtash (2019). Aerodynamic analysis of a three-bladed pivoted savonius wind turbine: Wind tunnel testing and numerical simulation. Journal of Applied Fluid Mechanics 12(3), 819–829.##
Blackwell, B. F., L. V. Feltz and R. E. Sheldahl (1977). Wind tunnel performance data for two-and three-bucket Savonius rotors. Sandia Laboratories Albuquerque, New Mexico.##
Ferrari, G., D. Federici, P. Schito, F. Inzoli and R. Mereu (2017). Cfd study of savonius wind turbine: 3d model validation and parametric analysis. Renewable Energy 105, 722–734.##
Gad, H., A. Abd El-Hamid, W. El-Askary and M. Nasef (2014). A new design of savonius wind turbine: numerical study. CFD Letters 6(4), 144–158.##
Jeon, K. S., J. I. Jeong, J.-K. Pan and K.-W. Ryu (2015). Effects of end plates with various shapes and sizes on helical savonius wind turbines. Renewable Energy 79, 167–176.##
Kacprzak, K., G. Liskiewicz, and K. Sobczak (2013). Numerical investigation of conventional and modified savonius wind turbines. Renewable Energy 60, 578–585.##
Kamoji, M., S. Kedare and S. Prabhu (2009). Performance tests on helical savonius rotors. Renewable Energy 34(3), 521–529.##
Kerikous, E. and D. Th venin (2019). Optimal shape of thick blades for a hydraulic savonius turbine. Renewable Energy 134, 629– 638.##
Khan, M. H. (1978). Model and prototype performance characteristics of savonius rotor windmill. Wind Engineering, 75–85.##
Mohamed, M., G. Janiga, E. Pap and D. Th venin (2010). Optimization of savonius turbines using an obstacle shielding the returning blade. Renewable Energy 35(11), 2618–2626.##
Mohamed, M., G. Janiga, E. Pap and D. Th venin (2011). Optimal blade shape of a modified savonius turbine using an obstacle shielding the returning blade. Energy Conversion and Management 52(1), 236– 242.##
Ogawa, T. and H. Yoshida (1986). The effects of a deflecting plate and rotor end plates on performances of savonius-type wind turbine. Bulletin of JSME 29(253), 2115–2121.##
Ramarajan, J. and S. Jayavel (2020). Numerical study of the effect of geometry and operating parameters on the performance of savonius vertical axis wind turbine. Current Science 119(12), 1927–1938.##
Reupke, P. and S. Probert (1991). Slatted-blade savonius wind-rotors. Applied Energy 40(1), 65–75.##
Sanusi, A., S. Soeparman, S. Wahyudi, and L. Yuliati (2016). Experimental study of combined blade savonius wind turbine. International Journal of Renewable Energy Research (IJRER) 6(2), 614–619.##
Sharma, S. and R. K. Sharma (2016). Performance improvement of savonius rotor using multiple quarter blades–a cfd investigation. Energy Conversion and Management 127, 43–54.##
Sivasegaram, S. (1978). An experimental investigation of a class of resistance-type, direction-independent wind turbines. Energy 3(1), 23–30.##
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.##
Tian, W., Z. Mao, B. Zhang and Y. Li (2018). Shape optimization of a savonius wind rotor with different convex and concave sides. Renewable energy 117, 287–299.##
Zhu, J., L. Zhang, Q. Qu and P. Liu (2020). Experimental investigation of aerodynamic characteristics for three typical micro wind turbines at low reynolds number. Journal of Applied Fluid Mechanics 13(4).##