Preliminary Design and Construction of a Small Hydro turbine for Off-Grid Power Generation
- Authors
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Ayodele Temitope OYENIRAN
OBAFEMI AWOLOWO UNIVERSITY, ILE-IFE, OSUN STATE
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Olamilekan G. Agbedun
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Fatiu O. Agboola
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Larry O. Famodimu
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Bamiji Z. Adewole
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- Keywords:
- Array
- Abstract
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This study looked into the preliminary design and construction of a small-scale hydro turbine which could be deployed into riverine, remote and off-grid communities for power supply. The candidate hydro turbine that offers an attractive solution for power generation of the scale envisaged for small rural communities is the axial-flow turbine of the propeller-type. This turbine offers several key advantages, including ease of construction, reliability, ease of operation and maintenance, efficiency, and adaptability to various environmental conditions. This paper detailed a comprehensive design methodology that began with the geometric optimization of the turbine components of a 1kW axial-flow turbine operating with 1.5 m head and flow rate of 0.07 m3/s. CFTurbo, a hydro-turbine design software package, was used together with SOLIDWORKS to design and perform numerical simulations of the flow within the proximity of the turbine components using Computational Fluid Dynamics (CFD). This process involved detailed analysis and iterative steps leading to modifications that ensured the turbine performed optimally across a spectrum of operational conditions. Both analytical approach and physical tests were used to accurately appraise the turbine’s operation characteristics. The maximum turbine output power during an off-design point testing was 54W at 189 rpm, flow rate of 0.0205 m3/s and a head of 0.55 m, giving an efficiency of 61%. The study concluded that there is sufficient local capacity to produce, using simple technology, axial-flow propeller type turbine that can be deployed as a viable option for small-scale hydro power supply to riverine and off-grid locations in Nigeria.
- Author Biography
- References
-
Abeykoon, C., and Hantsch, T. (2017). Design and analysis of a Kaplan Turbine runner wheel. Proceedings of the World Congress on Mechanical, Chemical, and Material Engineering. https://doi.org/10.11159/htff17.151
Aung, H. M.; Dr. San, N. A. and Dr. Myo, W. P. P. (2014). Design and performance analysis of a low head propeller turbine. International Journal of Scientific Engineering and Technology Research, Vol.03(Issue.09), 1791–1795. https://www.ijsetr.com/uploads/416532IJSETR1300-303.pdf
Ayancik, F.; Aradag, U.; Ozkaya, E.; Celebioglu, K.; Unver, O. and Aradag, S. (2013). Hydroturbine Runner design and manufacturing. International Journal of Materials Mechanics and Manufacturing, 162–165. https://doi.org/10.7763/ijmmm.2013.v1.35
Barsi, D.; Ubaldi, M.; Zunino, P. and Fink, R. (2021). Optimized design of a novel hydraulic propeller turbine for low heads. Designs, 5(1), 20. https://doi.org/10.3390/designs5010020
Chitrakar, S.; Solemslie, B. W.; Neopane, H. P. and Dahlhaug, O. G. (2020). Review on numerical techniques applied in impulse hydro turbines. Renewable Energy, 159, 843–859. https://doi.org/10.1016/j.renene.2020.06.058
Dahal, D. R.; Chitrakar, S.; Kapali, A.; Thapa, B. and Neopane, H. (2019). Design of spiral casing of Francis Turbine for micro hydro applications. Journal of Physics Conference Series, 1266(1), 012013. https://doi.org/10.1088/1742-6596/1266/1/012013
Douglas J. F.; Gasiorek J. M.; Swaffield J. A. and Jack L.B. (2005). Fluid Mechanics, 5th ed. Ashford Colour Press Ltd, Gosport.
EEEGUIDE (2024). Classification of hydraulic turbines. Available online at: https://www.eeeguide.com/classification-of-hydraulic-turbines/. Accessed on November 3, 2025.
Ei Mon (2016). Design and Performance Testing of 5KW Axial-flow Turbine for Hydropower. International Journal For Technological Research In Engineering, Volume 4, ISSN (Online): 2347 – 4718. www.ijtre.com.
Harish, H. V.; Santhosh, N.; Srikanth, H. V.; Dr. Raghu, M.S.; Praveena, B.A.; Amaresha, P.; Shivashankar and Palakshaiah. (2014). Optimum design of conical draft tube by analysis of flow using CFD simulation. In NMIT, BLDEA’s Dr.PGHCET, UVCE, & SJCIT, IJLTEMAS (p.99). https://www.ijltemas.in/DigitalLibrary/Vol.3Issue7/99-103.pdf.
Ibegbulam, M. C.; Fatounde, S. A. and Olowonubi, J. A (2023). Small Hydropower (SHP) Development in Nigeria: An Assessment, Challenges, And Opportunities. International Journal of Physical Sciences Research, 7 (1), 11-35.
Kumar, E. A. (2021). Impulse Turbine: Definition, Types, Component, Working Principle, Application, Advantages, Disadvantages. Available online at: https://themechanicalengineering.com/impulse-turbine/. Accessed on November 13, 2025.
Nautiyal, H. and Goel, V. (2020). Sustainability assessment of hydropower projects. Journal of Cleaner Production, 265, 121661. https://doi.org/10.1016/j.jclepro.2020.121661.
Nechleba, M. (1957). Hydraulic Turbines: Their Design and Equipment. Translated from the Czech Edition by Charles Mayer, CH.E. and Evans, A. G. ARTIA Prague.
Ritchie, H.; Roser, M. and Rosado, P. (2020). Renewable Energy. Available online at: https://ourworldindata.org/renewable-energy.
Sarkar, S.; Nag, A.K. and Kumar R. (2023). An overview of small-scale hydropower and its recent development. Renewable Energy Production and Distribution Volume 2, 249-314. https://doi.org/10.1016/b978-0-443-18439-0.00009-4.
Tiwari, G.; Kumar, J.; Prasad, V. and Patel, V. K. (2020). Utility of CFD in the design and performance analysis of hydraulic turbines — A review. Energy Reports, 6, 2410–2429. https://doi.org/10.1016/j.egyr.2020.09.004.
Zhang, M.; Valentín, D.; Valero, C.; Egusquiza, M. and Egusquiza, E. (2019). Failure investigation of a Kaplan turbine blade. Engineering Failure Analysis, 97, 690–700. https://doi.org/10.1016/j.engfailanal.2019.01.056.
Zhang, Z. (2021). Master equation, design equations and runaway speed of the Kaplan turbine. Journal of Hydrodynamics, 33(2), 282–300. https://doi.org/10.1007/s42241-021-0020-1.
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