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The highest μCHP system efficiency was calculated with a value of 92% for HT-PEMFC based system.
Maximum system efficiency was found by significantly increasing the surface area at the expense of increased dead volume.
Results reveal that the maximum system efficiency was as high as 81% when combining heat and power.
Thermal and electrical energy gain in the concentrated and non-concentrated panels were compared and total system efficiency was analyzed.
The system efficiency was first evaluated using experimental statistical designs with different concentrations of NaCl (150 to 3000 mg/L).
In the study, system efficiency was examined for desalination at low pressure formed by vacuum pump at 0, − 15 or − 25 °C condensation temperatures.
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Fifth, system efficiency is another important variable to consider.
System efficiency is analyzed, and the control strategy is determined.
The time-averaged system efficiency is then concluded from the statistics of the transient system efficiency.
This system efficiency is twice higher than the system with only conventional planar combustor.
The paper investigates how the system efficiency is affected by the system component performance and parameters.
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