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Maximum thermal efficiency?
Maximum thermal efficiency was 5.75% and maximum expander isentropic efficiency obtained was 77.74% during the experiment.
Furthermore, the maximum thermal efficiency recorded for this particular design was 58%.
Maximum thermal efficiency of the TESS system is 57.5 % after 12 h waiting duration.
The maximum thermal efficiency of the system was 96% and the gain output ratio (GOR) was 4.87.
This implies that the maximum thermal efficiency of a meso-scale combustor occurs in its lean conditions.
The optimal (maximum) thermal efficiency appears at the saturated or slightly-superheated vapor state at the turbine inlet.
The maximum device output power and maximum thermal efficiency occur at different values of external load parameter.
This regime has a maximum thermal efficiency and a minimum entropy generation at corresponding maximum power production.
The operational regimes at maximum thermal efficiency, maximum work output and minimum entropy production of these power cycles are compared.
Sensitivity analyses of the key cycle parameters and component performances on the maximum thermal efficiency have also been carried out.
More suggestions(15)
maximum thermal conductivity
maximum thermal resistance
maximum thermal performance
maximum photochemical efficiency
maximum current efficiency
maximum thermal stability
maximum thermal power
maximum thermal comfort
maximum thermal energy
maximum thermal conductance
maximum thermal degradation
maximum thermal threshold
maximum thermal acceptability
maximum thermal stress
maximum thermal flux
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