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The electrical efficiency of the electric motors driving the pump and compressor was (eta _{mathrm {e}}) = 0.95.
The simulation results of the CLC process that produces only electricity (case 5) give an overall electrical efficiency of 38.7%, which is close to what is observed by a previous study.
With consideration of an electrical efficiency of 40%, the technical potential for the electricity generation from biogas plants is 40 TWhel.
As shown in Table 7, the CLC process will still be more energy efficient than the Selexol and PSA processes and attain a net electrical efficiency of 40.0%.
The description of improving energy efficiency was the conclusion of an analysis published last year in the IEEE Annals of the History of Computing, with the title "Implications of Historical Trends in the Electrical Efficiency of Computing".
Cell-II has achieved an extra electrical efficiency of 11.0%, giving a total electrical efficiency of 41.8% for the series power generation.
Results indicate that electrical efficiency of the combined system is 62.4% (LHV).
The electrical efficiency of the cell also gets improved due to the optimization.
The thermal and electrical efficiency of the solar heater is 42% and 8.4%, respectively.
As such, the electrical efficiency of the new structure was improved.
The electrical efficiency of the stack varied from 39 to 41%.
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