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The stack performance was tested under system-relevant conditions.
The SOFC stack performance is based on anode-supported planar geometry.
The results summarize the importance of structure design of external manifold for stack performance.
The results demonstrate that thermal management is essential to ensure good stack performance.
Results indicate that stack performance represents good responding and reproducible ability.
They found an improvement in stack performance following cathode infiltration but no significant further improvement after subsequent anode infiltration.
At high temperatures, ferritic steels lack environmental stability in the SOFC operating environment, and gradually degrade the cell stack performance.
The model considers the causal relationship between the operation of the balance of plant and the fuel cell stack performance.
The proposed model can also be used to evaluate heat loss coefficient from measured stack performance and temperature data.
The failure in flow distribution among different unit cells may severely influence the fuel cell stack performance.
Under ideal conditions, a fuel cell stack performance is simply the sum of the performance of individual cells.
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