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http://dx.doi.org/10.5293/kfma.2014.17.5.067

Internal Flow Analysis on an Open Ducted Cross Flow Turbine with Very Low Head  

Wei, Qingsheng (Graduate school, Mokpo National University)
Hwang, Yeong-Cheol (Shinhan Precision Ltd.)
Choi, Young-Do (Department of Mechanical Engineering, Institute of New and Renewable Energy Technology Research, Mokpo National University)
Publication Information
Abstract
Recently, the cross flow turbine attracts more and more attention for its good performance over a large operating regime at off design point. This study adopts a very low head cross flow turbine that has barely been studied before, and investigates the effect of air layer on the performance of the cross flow turbine. As open duct is applied in this study and free surface model is used between the air layer and water, an engineering definition of efficiency, instead of traditional definition of efficiency, is used. As torque at the runner fluctuates up and down at a reasonable limit, statistical method is used. Pressure and water volume fraction contours are shown to present the characteristics of air-water flow. With constant air suction in the runner chamber, the water level gradually drops below the runner and efficiency of the turbine can be raised by 10 percent. All considered, the effect of air layer on the performance of turbine is considerable.
Keywords
Open ducted cross-flow turbine; Air layer; Draft tube; Performance; Internal flow;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 Haimerl, L. A., 1960, The Cross-Flow Turbine, Water Power Engineering Magazine, I. P. C. Business Pross.
2 Mockmore, C. A. and Merryfield, F., 1949, The Banki Water Turbine, Bulletin Series, No. 25.
3 Nakase, B. A., 2013, "Design of High Efficiency Cross-Flow Turbine for Hydro-Power Plant," International Journal of Engineering and Advanced Technology, Vol. 2, Iss. 3, pp. 308-311.
4 Choi, Y. D., Shin, B. R. and Lee, Y. H., 2010, "Air Layer Effect on the Performance Improvement of a Cross-Flow Hydro Turbine," Journal of Fluid Machinery, Vol. 13, Iss. 4, pp. 37-43.
5 Chandran, A. T., Anil, G. and Chandapillai, J., 2010, "Development and Testing of a Cross Flow Turbine," IGHEM, AHEC, IIT Roorkee, pp. 1-8.