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The integration of thermodynamics yields significant reduction in the synthesis model, addresses the impact of variable loads on the unit efficiencies, and enables a compact formulation of the design problem over long horizons of operation.
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Turnaround time is an important component of endoscopy unit efficiency.
Coarser particles at the mill outlet originate from poor separation and decrease the unit efficiency.
Its reduction to the level which is required by the CCU can improve power unit efficiency.
The design IP/LP crossover pressure has very significant impact on the power unit efficiency.
The maximum desalination unit efficiency and minimum evaporator temperature of absorption cooling unit are 40% and 4.7 °C, respectively.
Shaped femtosecond pulses are used to switch population transfer among different final states with high selectivity and almost unit efficiency.
The evaluation results of the unit efficiency with the time period of every 5 s may be provided.
In order to determine unit efficiency and plant irreversibility rate, exergy analysis is performed on individual equipment.
The results show that the use of groundwater enhanced IDEC unit efficiency up to 108% compared with a direct evaporative cooling efficiency that recorded 77.5%.
Physical models take into account mass and thermal balances at the steady state inside of the evaporation chambers and condensers through a Number of Transfer Unit – Efficiency model.
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