Title of article :
A New Sensitivity Study of Thermal Stress Distribution for a Planar Solid Oxide Fuel Cell
Author/Authors :
Fahs, Imad-Eddine Mechanical Engineering Faculty - K.N. Toosi University of Technology, Tehran , Ghassemi, Majid Mechanical Engineering Faculty - K.N. Toosi University of Technology, Tehran
Pages :
9
From page :
18
To page :
26
Abstract :
Converting chemical energy into electricity is done by an electro-chemical device known as a fuel cell. Thermal stress is caused at high operating temperature between 700 oC to 1000 oC of SOFC. Thermal stress causes gas escape, structure variability, crack initiation, crack propagation, and cease operation of the SOFC before its lifetime. The aim of this study is to present a method that predicts the initiation of cracks in an anisotropic porous planar SOFC. The temperature and stress distribution are calculated. The code uses the generated data, stress intensity factor, and the J-integral of the materials to predict the initiation of the crack inside the porous anode and cathode. The results show that the highest thermal stress occurs at the upper corners of cathode and at the lower corners of the anode. In addition, the thickness of cathode electrode on the left side is increased by 1.5 %. Finally, the crack initiation occurs on the left side between the upper and lower corners of the cathode.
Keywords :
Solid Oxide Fuel Cell , Computational Fluid Dynamic , Finite Elements , Thermal Stress , Stress Intensity Factor , Crack Initiation
Journal title :
Astroparticle Physics
Serial Year :
2018
Record number :
2467240
Link To Document :
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