Title of article :
Failure analysis of gas turbine generator cooling fan blades
Author/Authors :
Moussavi-Torshizi، نويسنده , , S.E. and Yadavar Nikravesh، نويسنده , , S.M. and Jahangiri، نويسنده , , A.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
Since the optimum operation of a generator is highly affected by increasing in temperature, a cooling system is used to control the temperature. Employing a fan as a cooling system for the generator at the end sides of its rotor is a practical method [Montazer Ghaem Gas Turbine Power Plant. Gas turbine generator manual, Iran, 2004]. In some cases, fracture of blades causes short circuit between rotor and stator and consequently generator explosion and huge financial loss.
fracture in cooling fan blades has been occurred five times in our case study, in this research, the emphasis has been placed on failure analysis and preventing methods from the fracture in this generator’s fan blades.
and analysis of the above-mentioned problem have been conducted in different ways, which the main titles results are as follows:
these failures have been happened after the first operation of gas turbine or at the early after operation 100 h after gas turbine repairs [Alsthom Company. Failure report for gas turbine fan blades, 1997].
urgical and structural analyses on the failed blades have not shown any microstructure degradation.
s on the ruptured surfaces using scanning electron microscope (SEM) have shown that fracture has been happened as a results of high cycle fatigue (hcf).
ation of alternative stresses has indicated that this stress is less than fatigue endurance limit of blade material and none of these stresses and forces could result in fracture.
analysis of blade has indicated that the blades natural frequency has been limited too close to the blades operational frequency. It means that making changes in blades installation conditions; blade natural frequency approaches the operational frequency and consequently causes the resonance.
is results show that the final fracture of blades is due to fatigue conditions in resonance state and growth of existent tiny probable cracks.
Keywords :
Computational fluid dynamic , resonance , Generator cooling fan blade , Scanning electron microscope , Fatigue
Journal title :
Engineering Failure Analysis
Journal title :
Engineering Failure Analysis