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Finally, proper sites are determined in order to achieve maximum thermal and fast neutron flux.
The maximum thermal and combustion efficiencies were 69%and82%2%, respectively.
Results show that the TDC system is capable of providing maximum thermal and electrical COP's of 0.50 and 4.6 respectively during the hottest period.
The design method for these systems, as it is proposed by ASHRAE, is taking into account the maximum thermal and cooling loads of the building, the thermophysical properties of the soil at the area of installation and a minimum Coefficient of Performance (COP) of the heat pumps.
Maximum thermal and electrical output is computed to be 2592.42 W with 78.2% thermal efficiency by 2-cell without CPC configuration using Syltherm-800 and 692.2 W with 20.88% electrical efficiency by 3-cell without CPC with Al2O3/Water (φ = 1%) respectively.
Also, optimum operating conditions for each nanofluid revealed that in the given design range, the maximum thermal and exergy efficiencies occurred at fv = 40 ppm, Q = 10 ml/min and GT = 884 W/m2 for magnetite; fv = 40 ppm, Q = 10 ml/min and GT = 884 W/m2 for graphite and fv = 38.6, Q = 10 ml/min and GT = 826 W/m2 for silver nanofluids.
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The minimum energy requirements corresponding to the reboiler can be calculated from the maximum thermal efficiency, and the variation of entropy and enthalpy of mixing between distillate and bottom streams.
The maximum thermal efficiency and PV efficiency were obtained about 56.19% and 13.75% respectively for four fins at 0.14 kg/s of mass flow rate and 700 W/m2 of solar radiation.
MPSAHC system delivered specific energy demand (SED) of 11.51 kWh kg−1 while the maximum thermal collector and daily average transient collector efficiencies of 72.59% and 36.38% were achieved, respectively.
The optimum parameters for fishpond were 30 m length, 16 m breadth, 1.25 m depth, 1.0 m water depth, 75° lining inclination, and 8 air changes per hour for maximum temperature gain, maximum thermal efficiency and minimum thermal load leveling.
This regime has a maximum thermal efficiency and a minimum entropy generation at corresponding maximum power production.
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