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Generally, the heat generation rate in reaction increases in proportion to the reactor volume.
It is assumed that the heat generation rate (from both the external temperature of the cabin and the heat generated from the equipment) is constant which results in a constant power consumption of the air conditioning throughout time.
A uniform heat generation rate was applied to the cylinder.
The reversible heat generation rate was found to be a significant portion of the total heat generation rate.
The heat generation rate, ˙Q, was raised with exponential function, Q̇="Q0exp(t/τ) (where t is time, and τ is period of heat generation rate).
The evaluations indicate that the volumetric heat generation rate model has the best performance.
The selected models are the volumetric heat generation rate model, Gaussian model, and double ellipsoidal model.
The heat generation rate and fraction of transformation were calculated using the Gray's model.
Heat generation rate in SOFC module was estimated under various thermal self-sustained conditions.
Coupled with the desired temperature difference, the heat generation rate should not exceed 30 W.
The increment of the surface temperature difference was higher for a higher heat generation rate.
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