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The results of the optimization show that ejector refrigeration cycle is operating at optimum state based on exergy efficiency and product unit cost when generator, condenser and evaporator work at 94.54 °C, 33.44 °C and 0.03 °C, respectively.
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The use of the simulation tool THERMAS give us the opportunity to investigate all the appropriate parameters that affect system's efficiency based on exergy analysis while incorporating a detailed parametric analysis regarding the whole system.
Based on exergy analysis it has been shown that efficiency of SFPC has been improved considerably.
Based on exergy analysis of charging and discharging processes in a gas-hydrate cool storage system, the formulas for exergy efficiency at the sensible heat transfer stage and the phase change stage corresponding to gas-hydrate charging and discharging processes are obtained.
The preheater device has been designed based on exergy effectiveness transfer and dimensionless entropy generation approaches which are highly related with energy efficiency.
Based on exergy analysis, the optimal operation performance of the chilled water system and each equipment under specific load condition are obtained by maximizing their exergy efficiencies respectively.
Global energy and exergy flow diagrams for the industrial sector are developed and overall efficiencies for the global industrial sector evaluated as 51% based on energy and 30% based on exergy.
Some studies on helium refrigerators and liquefiers based on exergy are available in literature.
Performance evaluation was based on EUF, exergy efficiency and primary energy savings (PES) analysis.
The effect of anode thickness on exergy efficiency (middle).
The effect of anodic diffusion path on exergy efficiency (bottom).
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