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Nehir tipi bir hidrokinetik türbinin dizayn ve simülasyonu

2014
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Advisor: Yrd. Doç. Dr. Mehmet İshak Yüce

Abstract (EN)

Hydrokinetic turbines are electromechanical devices that convert kinetic energy inside the flowing water into electricity without requiring water head. There are many different designs of large scale hydrokinetic turbines for tidal applications, however little efforts have been made on small scale river turbines. In the present study a fixed speed, stall regulated, riverine hydrokinetic turbine rotor (TIGRIS-27H) has been designed and simulated. The blades were optimized by genetic algorithm. The computational fluid dynamics (CFD) simulations have been conducted using ANSYS CFX software. The simulation results of power, torque and thrust have been found to be in a very good agreement with the theoretical design parameters. TIGRIS-27H is a 3 bladed horizontal axis hydrokinetic turbine rotating at 45 rpm and generates up to 27 kW power at the rated velocity of 2.7 m/s with an average power coefficient of 0.43.

Author

Abdullah Muratoğlu

How to Cite

Abdullah Muratoğlu (Doctorate thesis). Nehir tipi bir hidrokinetik türbinin dizayn ve simülasyonu, 2014, Gaziantep University.

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