>
Fa   |   Ar   |   En
   enhancing bulb turbine performance assessing air injection for vibration mitigation and hydrofoil cavitation  
   
نویسنده praveen s. ,marimuthu s. ,alqahtani b. ,bharathiraja g. ,gokilakrishnan g.
منبع journal of applied fluid mechanics - 2024 - دوره : 17 - شماره : 11 - صفحه:2313 -2332
چکیده    Small hydro technology is playing a crucial role in advancing sustainable, clean energy policies as part of the global hydro development strategy. its contribution to social and economic development is becoming more prominent, particularly in ensuring electricity access for rural communities and supporting industrial expansion. the main causes of bulb turbine failures under high operating conditions are frequently attributed to variations in pressure in the draft tubes, which are aggravated when a spinning vortex rope is formed under load operation. different fluid injection techniques, namely compressed air and water jet injection, address these issues and reduce the negative results of cavitation. the investigation covers the flow visualization on the suction side of a single hydrofoil utilizing a cavitation tunnel and a bulb turbine. this study assesses the effectiveness of compressed air injection in reducing vibration generated by cavitation in bulb turbines. positive results of the experimental studies suggest a decrease in noise and vibration by air injection that prevents oscillations of the vortex rope. this research also considers how the hydrofoil design of bulb runner blades influences flow characteristics. hence, it provides knowledge on cavitation structures in diverse cavitation numbers. different studies that compare the original and modified hydrofoil designs reveal remarkable improvements that may be due to changes in the key parameters of the hydrofoil, such as later cavitation initiation and reduced intensity. to obtain the optimal output of a bulb turbine by considering air injection for vibration reduction and hydrofoil design changes to limit the negative effect of cavitation, the reynolds number and cavitation number are to be defined. this multidisciplinary approach possesses enormous potential to increase the reliability and efficiency of bulb turbines in challenging operating conditions.
کلیدواژه hydropower ,bulb turbine ,rotating vortex rope ,compressed air injection ,part-load operation ,vibration ,cavitation
آدرس karpagam academy of higher education, department of mechanical engineering, india, karpagam academy of higher education, department of mechanical engineering, india, northern border university, college of engineering, mechanical engineering department, saudi arabia, saveetha institute of medical and technical sciences, saveetha school of engineering, department of mechanical engineering, india, sri eshwar college of engineering, department of mechanical engineering, india
پست الکترونیکی ggokilakrishnan@gmail.com
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved