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As it is seen, again, the MOPSO method has the highest thermal efficiency for almost all the fluids.
R123 in subcritical ORC system yields the highest thermal efficiency and exergy efficiency of 11.1% and 54.1%, respectively.
The highest thermal efficiency was determined for the solar air heater with conical surface for all operating conditions.
On the other hand, R601a has the highest thermal efficiency and lowest total exergy destruction in both optimum cases.
In MOPSO method, the highest thermal efficiency belongs to the R11 with 24.1 and the lowest efficiency belongs to C5F12 with 14.9%.
In the simulation, a highest thermal efficiency of 51.37% and a net acoustic power of 1.6 kW under a heating temperature of 650 °C can be obtained.
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Finally, the unit operations were thermally integrated to achieve high thermal efficiency.
Instead, supercritical water from the core drives a turbine directly.Doing away with the need for separate pumps, pressurisers and steam generators results in higher thermal efficiency: 45% rather than the 33% of existing PWRs, according to Idaho National Laboratory.
Like the VHTR, the GFR uses pressurised helium both to cool the reactor core and drive a turbine, yielding higher thermal efficiency than systems with a secondary heat-transfer loop.
A high thermal efficiency was reached at zero reduced temperature.
This means higher thermal efficiency and power output.
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