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It has been observed that maximum overall exergy efficiency is 20.28% at 0.000108 kg/s mass flow rate.
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The maximum overall net exergy efficiency was 11.4% in the morning.
It has been observed that an overall exergy of proposed system is maximum for winter condition due to less thermal losses.
It is further to be noted that the overall exergy and thermal efficiency of an integrated photovoltaic thermal solar system (IPVTS) is maximum at the hot water withdrawal flow rate of 0.006 kg/s.
First, in order to systematically perform exergy analyses, the overall exergy loss for each process is determined.
The overall exergy efficiency of photosynthesis is calculated to be 3.9percentt.
It was found to have an overall exergy and energy efficiencies of 31.95% and 62.97%, respectively.
By defining exergy balances and black-box models for plant components, investigation has been made to determine effect of each component on overall exergy efficiency.
By defining exergy balances and black-box models for plant units, investigation has been made to determine effect of each unit on the overall exergy efficiency.
The parts of the system with largest exergy destruction in both cycles were compared and the overall exergy and energy efficiencies for the power plant were calculated.
It has been observed that the instant overall exergy gain obtained from optimized system is 1.42 kW h, which is 87.86% more than the overall exergy gain of a un-optimized system given in literature.
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