Improvement of flow behavior in the spiral casing of Francis hydro turbine model by shape optimization

Author:

Shrestha Ujjwal,Choi Young-Do

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference27 articles.

1. International Hydropower Association, 2019 Hydropower Status Report: Sector Trends and Insights, London (2019).

2. W. Shyy and T. C. Vu, On the adoption of velocity variable and grid system for fluid flow computation in curvilinear coordinates, Journal of Computational Physics, 92 (1991) 82–105.

3. P. R. Nakkina, A. P. Karaiyan and S. K. Gurunathan, Analysis of total head loss in various configurations of spiral casing: a numerical study, Proceedings of ASME 2016 International Mechanical Engineering Congress and Exposition, Phoneix, Arizona, USA (2016).

4. J. Desai, A. Roghelia, V. Soni and V. Chauhan, Validation of hydraulic design of spiral casing and stay vanes of Francis turbine using CFD, Proceedings of 37th International & 4th National Conference on Fluid Mechanics and Fluid Power, Madras, Chennai, India (2010).

5. J. Kurokawa and H. Nagahara, Flow characteristics in spiral casing of water turbines, Proceedings of 13th International Association for Hydraulic Research Symposium on Hydraulic Machinery and Cavitation, Montreal, Canada (1986).

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