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A model for planar solid oxide fuel cell repeat elements and stacks has been developed.
The case study illustrates applications of the CFD model for planar SOFC with different anode flow field designs.
An easy-to-approach and comprehensive mathematical model for planar type solid oxide fuel cells is presented in the current work.
We investigate the accuracy of the ellipsoidal-statistical Bhatnagar Gross Krook (ES-BGK) kinetic model for planar force-driven Poiseuille flows.
By using a spatial filter model for planar gradiometers and a deconvolution procedure we were able to retrieve the magnetic field from flux measurements made by planar gradiometers configurations.
In this work, a fully three-dimensional mathematical model for planar porous-electrode-supported (PES) solid oxide fuel cell (SOFC) has been constructed to simulate the steady state electrochemical characteristics and multi-species/heat transport.
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The present work provides a comparative study of the existing analytical models for planar functionally graded adhesive single lap joints.
The calculated area per single adsorbed molecule agrees with that derived on the basis of molecular models for planar orientation.
The polar orientation of hairs in the Drosophila wing epithelium is widely used as a model system for planar polarity in animals (Adler, 2002).
A comprehensive mathematical model for the planar solid oxide fuel cell (SOFC) stack is presented.
This paper presents a numerical model for a planar solid oxide fuel cell (SOFC) with mixed ionic electronic conducting electrodes.
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